NCBI Taxonomy: 120273

Taxus mairei (ncbi_taxid: 120273)

found 216 associated metabolites at species taxonomy rank level.

Ancestor: Taxus

Child Taxonomies: none taxonomy data.

Catechin

(2R,3S)-2-(3,4-dihydroxyphenyl)-3,4-dihydro-2H-1-benzopyran-3,5,7-triol

C15H14O6 (290.079)


Catechin, also known as cyanidanol or catechuic acid, belongs to the class of organic compounds known as catechins. Catechins are compounds containing a catechin moiety, which is a 3,4-dihydro-2-chromene-3,5.7-tiol. Catechin also belongs to the group of compounds known as flavan-3-ols (or simply flavanols), part of the chemical family of flavonoids. Catechin is one of the 4 catechin known diastereoisomers. Two of the isomers are in trans configuration and are called catechin and the other two are in cis configuration and are called epicatechin. The most common catechin isomer is the (+)-catechin. The other stereoisomer is (-)-catechin or ent-catechin. The most common epicatechin isomer is (-)-epicatechin. Catechin is a very hydrophobic molecule, practically insoluble (in water), and relatively neutral. Catechin is a bitter tasting compound and is associated with the bitterness in tea. Catechin is a plant secondary metabolite. Secondary metabolites are metabolically or physiologically non-essential metabolites that may serve a role as defense or signalling molecules. In some cases they are simply molecules that arise from the incomplete metabolism of other secondary metabolites. Catechin is an antioxidant flavonoid, occurring especially in woody plants as both Catechin and (-)-Catechin (cis) forms. Outside of the human body, Catechin is found, on average, in the highest concentration in foods, such as blackcurrants (Ribes nigrum), evergreen blackberries (Rubus laciniatus), and blackberries (Rubus) and in a lower concentration in dills (Anethum graveolens), hot chocolates, and medlars (Mespilus germanica). Catechin has also been detected, but not quantified in, several different foods, such as rice (Oryza sativa), apple ciders, peanuts (Arachis hypogaea), fruit juices, and red teas. This could make catechin a potential biomarker for the consumption of these foods. Based on a literature review a significant number of articles have been published on Catechin. (+)-catechin is the (+)-enantiomer of catechin and a polyphenolic antioxidant plant metabolite. It has a role as an antioxidant and a plant metabolite. It is an enantiomer of a (-)-catechin. An antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. Cianidanol is a natural product found in Visnea mocanera, Salacia chinensis, and other organisms with data available. Catechin is a metabolite found in or produced by Saccharomyces cerevisiae. An antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. See also: Gallocatechin (related); Crofelemer (monomer of); Bilberry (part of) ... View More ... Present in red wine. Widespread in plants; found in a variety of foodstuffs especies apricots, broad beans, cherries, chocolate, grapes, nectarines, red wine, rhubarb, strawberries and tea The (+)-enantiomer of catechin and a polyphenolic antioxidant plant metabolite. Catechin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=154-23-4 (retrieved 2024-07-12) (CAS RN: 154-23-4). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). (±)-Catechin (rel-Cianidanol) is the racemate of Catechin. (±)-Catechin has two steric forms of (+)-Catechin and its enantiomer (-)-Catechin. (+)-Catechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM. Anticancer, anti-obesity, antidiabetic, anticardiovascular, anti-infectious, hepatoprotective, and neuroprotective effects[1]. (±)-Catechin (rel-Cianidanol) is the racemate of Catechin. (±)-Catechin has two steric forms of (+)-Catechin and its enantiomer (-)-Catechin. (+)-Catechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM. Anticancer, anti-obesity, antidiabetic, anticardiovascular, anti-infectious, hepatoprotective, and neuroprotective effects[1]. Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM. Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM.

   

Protocatechuic acid

3,4-dihydroxybenzoic acid

C7H6O4 (154.0266)


Protocatechuic acid, also known as protocatechuate or 3,4-dihydroxybenzoate, belongs to the class of organic compounds known as hydroxybenzoic acid derivatives. Hydroxybenzoic acid derivatives are compounds containing a hydroxybenzoic acid (or a derivative), which is a benzene ring bearing a carboxyl and a hydroxyl groups. The enzyme protocatechuate 3,4-dioxygenase uses 3,4-dihydroxybenzoate and O2 to produce 3-carboxy-cis,cis-muconate. Protocatechuic acid is a drug. In the analogous hardening of the cockroach ootheca, the phenolic substance concerned is protocatechuic acid. Protocatechuic acid is a mild, balsamic, and phenolic tasting compound. Outside of the human body, protocatechuic acid is found, on average, in the highest concentration in a few different foods, such as garden onions, cocoa powders, and star anises and in a lower concentration in lentils, liquors, and red raspberries. Protocatechuic acid has also been detected, but not quantified in several different foods, such as cloud ear fungus, american pokeweeds, common mushrooms, fruits, and feijoa. This could make protocatechuic acid a potential biomarker for the consumption of these foods. It is also found in Allium cepa (17,540 ppm). It is a major metabolite of antioxidant polyphenols found in green tea. Similarly, PCA was reported to increase proliferation and inhibit apoptosis of neural stem cells. In vitro testing documented antioxidant and anti-inflammatory activity of PCA, while liver protection in vivo was measured by chemical markers and histological assessment. 3,4-dihydroxybenzoic acid, also known as protocatechuic acid or 4-carboxy-1,2-dihydroxybenzene, belongs to hydroxybenzoic acid derivatives class of compounds. Those are compounds containing a hydroxybenzoic acid (or a derivative), which is a benzene ring bearing a carboxyl and a hydroxyl groups. 3,4-dihydroxybenzoic acid is soluble (in water) and a weakly acidic compound (based on its pKa). 3,4-dihydroxybenzoic acid can be synthesized from benzoic acid. 3,4-dihydroxybenzoic acid is also a parent compound for other transformation products, including but not limited to, methyl 3,4-dihydroxybenzoate, ethyl 3,4-dihydroxybenzoate, and 1-(3,4-dihydroxybenzoyl)-beta-D-glucopyranose. 3,4-dihydroxybenzoic acid is a mild, balsamic, and phenolic tasting compound and can be found in a number of food items such as white mustard, grape wine, abalone, and asian pear, which makes 3,4-dihydroxybenzoic acid a potential biomarker for the consumption of these food products. 3,4-dihydroxybenzoic acid can be found primarily in blood, feces, and urine, as well as in human fibroblasts and testes tissues. 3,4-dihydroxybenzoic acid exists in all eukaryotes, ranging from yeast to humans. Protocatechuic acid (PCA) is a dihydroxybenzoic acid, a type of phenolic acid. It is a major metabolite of antioxidant polyphenols found in green tea. It has mixed effects on normal and cancer cells in in vitro and in vivo studies . 3,4-dihydroxybenzoic acid is a dihydroxybenzoic acid in which the hydroxy groups are located at positions 3 and 4. It has a role as a human xenobiotic metabolite, a plant metabolite, an antineoplastic agent, an EC 1.1.1.25 (shikimate dehydrogenase) inhibitor and an EC 1.14.11.2 (procollagen-proline dioxygenase) inhibitor. It is a member of catechols and a dihydroxybenzoic acid. It is functionally related to a benzoic acid. It is a conjugate acid of a 3,4-dihydroxybenzoate. 3,4-Dihydroxybenzoic acid is a natural product found in Visnea mocanera, Amomum subulatum, and other organisms with data available. Protocatechuic acid is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Black Cohosh (part of); Vaccinium myrtillus Leaf (part of); Menyanthes trifoliata leaf (part of) ... View More ... A dihydroxybenzoic acid in which the hydroxy groups are located at positions 3 and 4. Protocatechuic acid. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=99-50-3 (retrieved 2024-06-29) (CAS RN: 99-50-3). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Protocatechuic acid is a phenolic compound which exhibits neuroprotective effect. Protocatechuic acid is a phenolic compound which exhibits neuroprotective effect.

   

linolenate(18:3)

(9Z,12Z,15Z)-octadeca-9,12,15-trienoic acid

C18H30O2 (278.2246)


alpha-Linolenic acid (ALA) is a polyunsaturated fatty acid (PUFA). It is a member of the group of essential fatty acids called omega-3 fatty acids. alpha-Linolenic acid, in particular, is not synthesized by mammals and therefore is an essential dietary requirement for all mammals. Certain nuts (English walnuts) and vegetable oils (canola, soybean, flaxseed/linseed, olive) are particularly rich in alpha-linolenic acid. Omega-3 fatty acids get their name based on the location of one of their first double bond. In all omega-3 fatty acids, the first double bond is located between the third and fourth carbon atom counting from the methyl end of the fatty acid (n-3). Although humans and other mammals can synthesize saturated and some monounsaturated fatty acids from carbon groups in carbohydrates and proteins, they lack the enzymes necessary to insert a cis double bond at the n-6 or the n-3 position of a fatty acid. Omega-3 fatty acids like alpha-linolenic acid are important structural components of cell membranes. When incorporated into phospholipids, they affect cell membrane properties such as fluidity, flexibility, permeability, and the activity of membrane-bound enzymes. Omega-3 fatty acids can modulate the expression of a number of genes, including those involved with fatty acid metabolism and inflammation. alpha-Linolenic acid and other omega-3 fatty acids may regulate gene expression by interacting with specific transcription factors, including peroxisome proliferator-activated receptors (PPARs) and liver X receptors (LXRs). alpha-Linolenic acid is found to be associated with isovaleric acidemia, which is an inborn error of metabolism. α-Linolenic acid can be obtained by humans only through their diets. Humans lack the desaturase enzymes required for processing stearic acid into A-linoleic acid or other unsaturated fatty acids. Dietary α-linolenic acid is metabolized to stearidonic acid, a precursor to a collection of polyunsaturated 20-, 22-, 24-, etc fatty acids (eicosatetraenoic acid, eicosapentaenoic acid, docosapentaenoic acid, tetracosapentaenoic acid, 6,9,12,15,18,21-tetracosahexaenoic acid, docosahexaenoic acid).[12] Because the efficacy of n−3 long-chain polyunsaturated fatty acid (LC-PUFA) synthesis decreases down the cascade of α-linolenic acid conversion, DHA synthesis from α-linolenic acid is even more restricted than that of EPA.[13] Conversion of ALA to DHA is higher in women than in men.[14] α-Linolenic acid, also known as alpha-linolenic acid (ALA) (from Greek alpha meaning "first" and linon meaning flax), is an n−3, or omega-3, essential fatty acid. ALA is found in many seeds and oils, including flaxseed, walnuts, chia, hemp, and many common vegetable oils. In terms of its structure, it is named all-cis-9,12,15-octadecatrienoic acid.[2] In physiological literature, it is listed by its lipid number, 18:3 (n−3). It is a carboxylic acid with an 18-carbon chain and three cis double bonds. The first double bond is located at the third carbon from the methyl end of the fatty acid chain, known as the n end. Thus, α-linolenic acid is a polyunsaturated n−3 (omega-3) fatty acid. It is a regioisomer of gamma-linolenic acid (GLA), an 18:3 (n−6) fatty acid (i.e., a polyunsaturated omega-6 fatty acid with three double bonds). Alpha-linolenic acid is a linolenic acid with cis-double bonds at positions 9, 12 and 15. Shown to have an antithrombotic effect. It has a role as a micronutrient, a nutraceutical and a mouse metabolite. It is an omega-3 fatty acid and a linolenic acid. It is a conjugate acid of an alpha-linolenate and a (9Z,12Z,15Z)-octadeca-9,12,15-trienoate. Alpha-linolenic acid (ALA) is a polyunsaturated omega-3 fatty acid. It is a component of many common vegetable oils and is important to human nutrition. alpha-Linolenic acid is a metabolite found in or produced by Escherichia coli (strain K12, MG1655). Linolenic Acid is a natural product found in Prunus mume, Dipteryx lacunifera, and other organisms with data available. Linolenic Acid is an essential fatty acid belonging to the omega-3 fatty acids group. It is highly concentrated in certain plant oils and has been reported to inhibit the synthesis of prostaglandin resulting in reduced inflammation and prevention of certain chronic diseases. Alpha-linolenic acid (ALA) is a polyunsaturated omega-3 fatty acid. It is a component of many common vegetable oils and is important to human nutrition. A fatty acid that is found in plants and involved in the formation of prostaglandins. Seed oils are the richest sources of α-linolenic acid, notably those of hempseed, chia, perilla, flaxseed (linseed oil), rapeseed (canola), and soybeans. α-Linolenic acid is also obtained from the thylakoid membranes in the leaves of Pisum sativum (pea leaves).[3] Plant chloroplasts consisting of more than 95 percent of photosynthetic thylakoid membranes are highly fluid due to the large abundance of ALA, evident as sharp resonances in high-resolution carbon-13 NMR spectra.[4] Some studies state that ALA remains stable during processing and cooking.[5] However, other studies state that ALA might not be suitable for baking as it will polymerize with itself, a feature exploited in paint with transition metal catalysts. Some ALA may also oxidize at baking temperatures. Gamma-linolenic acid (γ-Linolenic acid) is an omega-6 (n-6), 18 carbon (18C-) polyunsaturated fatty acid (PUFA) extracted from Perilla frutescens. Gamma-linolenic acid supplements could restore needed PUFAs and mitigate the disease[1]. Gamma-linolenic acid (γ-Linolenic acid) is an omega-6 (n-6), 18 carbon (18C-) polyunsaturated fatty acid (PUFA) extracted from Perilla frutescens. Gamma-linolenic acid supplements could restore needed PUFAs and mitigate the disease[1]. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1]. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1]. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1].

   

Coniferaldehyde

(E)-3-(4-hydroxy-3-methoxyphenyl)prop-2-enal

C10H10O3 (178.063)


Coniferaldehyde (CAS: 458-36-6), also known as 4-hydroxy-3-methoxycinnamaldehyde or ferulaldehyde, belongs to the class of organic compounds known as methoxyphenols. Methoxyphenols are compounds containing a methoxy group attached to the benzene ring of a phenol moiety. Coniferaldehyde is an extremely weak basic (essentially neutral) compound (based on its pKa). Outside of the human body, coniferaldehyde is found, on average, in the highest concentration within sherries. Coniferaldehyde has also been detected, but not quantified in, several different foods, such as highbush blueberries, lima beans, Chinese cabbages, loquats, and greenthread tea. This could make coniferaldehyde a potential biomarker for the consumption of these foods. BioTransformer predicts that coniferaldehyde is a product of caffeic aldehyde metabolism via a catechol-O-methylation-pattern2 reaction catalyzed by the enzyme catechol O-methyltransferase (PMID: 30612223). Coniferyl aldehyde, also known as 4-hydroxy-3-methoxycinnamaldehyde or 4-hm-ca, is a member of the class of compounds known as methoxyphenols. Methoxyphenols are compounds containing a methoxy group attached to the benzene ring of a phenol moiety. Coniferyl aldehyde is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Coniferyl aldehyde can be found in a number of food items such as pear, common walnut, kelp, and citrus, which makes coniferyl aldehyde a potential biomarker for the consumption of these food products. Coniferyl aldehyde is a low molecular weight phenolic compound susceptible to be extracted from cork stoppers into wine . Coniferyl aldehyde is a member of the class of cinnamaldehydes that is cinnamaldehyde substituted by a hydroxy group at position 4 and a methoxy group at position 3. It has a role as an antifungal agent and a plant metabolite. It is a member of cinnamaldehydes, a phenylpropanoid and a member of guaiacols. It is functionally related to an (E)-cinnamaldehyde. 4-Hydroxy-3-methoxycinnamaldehyde is a natural product found in Pandanus utilis, Microtropis japonica, and other organisms with data available. A member of the class of cinnamaldehydes that is cinnamaldehyde substituted by a hydroxy group at position 4 and a methoxy group at position 3. Acquisition and generation of the data is financially supported in part by CREST/JST. Coniferaldehyde (Ferulaldehyde) is an effective inducer of heme oxygenase-1 (HO-1). Coniferaldehyde exerts anti-inflammatory properties in response to LPS. Coniferaldehyde inhibits LPS-induced apoptosis through the PKCα/β II/Nrf-2/HO-1 dependent pathway in RAW264.7 macrophage cells[1]. Coniferaldehyde (Ferulaldehyde) is an effective inducer of heme oxygenase-1 (HO-1). Coniferaldehyde exerts anti-inflammatory properties in response to LPS. Coniferaldehyde inhibits LPS-induced apoptosis through the PKCα/β II/Nrf-2/HO-1 dependent pathway in RAW264.7 macrophage cells Coniferaldehyde. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=458-36-6 (retrieved 2024-09-04) (CAS RN: 458-36-6). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0).

   

Kaempferol

3,5,7-trihydroxy-2-(4-hydroxyphenyl)-4H-chromen-4-one

C15H10O6 (286.0477)


Kaempferol is a tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Acting as an antioxidant by reducing oxidative stress, it is currently under consideration as a possible cancer treatment. It has a role as an antibacterial agent, a plant metabolite, a human xenobiotic metabolite, a human urinary metabolite, a human blood serum metabolite and a geroprotector. It is a member of flavonols, a 7-hydroxyflavonol and a tetrahydroxyflavone. It is a conjugate acid of a kaempferol oxoanion. Kaempferol is a natural product found in Lotus ucrainicus, Visnea mocanera, and other organisms with data available. Kaempferol is a natural flavonoid which has been isolated from Delphinium, Witch-hazel, grapefruit, and other plant sources. Kaempferol is a yellow crystalline solid with a melting point of 276-278 degree centigrade. It is slightly soluble in water, and well soluble in hot ethanol and diethyl ether. Kaempferol is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Cannabis sativa subsp. indica top (part of); Tussilago farfara flower (part of). Kaempferol, also known as rhamnolutein or c.i. 75640, belongs to the class of organic compounds known as flavonols. Flavonols are compounds that contain a flavone (2-phenyl-1-benzopyran-4-one) backbone carrying a hydroxyl group at the 3-position. Thus, kaempferol is considered to be a flavonoid molecule. A tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Kaempferol is a very hydrophobic molecule, practically insoluble in water, and relatively neutral. Kaempferol exists in all eukaryotes, ranging from yeast to humans. Kaempferol is a bitter tasting compound. Kaempferol is found, on average, in the highest concentration within a few different foods, such as saffrons, capers, and cumins and in a lower concentration in lovages, endives, and cloves. Kaempferol has also been detected, but not quantified, in several different foods, such as shallots, pine nuts, feijoa, kombus, and chicory leaves. This could make kaempferol a potential biomarker for the consumption of these foods. Kaempferol is a potentially toxic compound. Very widespread in the plant world, e.g. in Brassicaceae, Apocynaceae, Dilleniaceae, Ranunculaceae, Leguminosae, etc. Found especies in broccoli, capers, chives, kale, garden cress, fennel, lovage, dill weed and tarragon [CCD] A tetrahydroxyflavone in which the four hydroxy groups are located at positions 3, 5, 7 and 4. Acting as an antioxidant by reducing oxidative stress, it is currently under consideration as a possible cancer treatment. CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3906; ORIGINAL_PRECURSOR_SCAN_NO 3905 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3916; ORIGINAL_PRECURSOR_SCAN_NO 3915 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3928; ORIGINAL_PRECURSOR_SCAN_NO 3927 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX508; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4291; ORIGINAL_PRECURSOR_SCAN_NO 4290 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3918; ORIGINAL_PRECURSOR_SCAN_NO 3917 CONFIDENCE standard compound; INTERNAL_ID 898; DATASET 20200303_ENTACT_RP_MIX500; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 3915; ORIGINAL_PRECURSOR_SCAN_NO 3914 Acquisition and generation of the data is financially supported in part by CREST/JST. INTERNAL_ID 2358; CONFIDENCE Reference Standard (Level 1) CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 2358 CONFIDENCE standard compound; INTERNAL_ID 47 CONFIDENCE standard compound; ML_ID 45 Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4]. Kaempferol (Kempferol), a flavonoid found in many edible plants, inhibits estrogen receptor α expression in breast cancer cells and induces apoptosis in glioblastoma cells and lung cancer cells by activation of MEK-MAPK. Kaempferol can be uesd for the research of breast cancer[1][2][3][4].

   

4-Hydroxybenzaldehyde

4-hydroxybenzaldehyde

C7H6O2 (122.0368)


4-Hydroxybenzaldehyde, also known as 4-formylphenol or 4-hydroxybenzenecarbonal, belongs to the class of organic compounds known as hydroxybenzaldehydes. These are organic aromatic compounds containing a benzene ring carrying an aldehyde group and a hydroxyl group. A hydroxybenzaldehyde that is benzaldehyde substituted with a hydroxy group at position C-4. 4-Hydroxybenzaldehyde exists in all living organisms, ranging from bacteria to humans. 4-Hydroxybenzaldehyde is a sweet, almond, and balsam tasting compound. 4-Hydroxybenzaldehyde is found, on average, in the highest concentration within vinegars and oats. 4-Hydroxybenzaldehyde has also been detected, but not quantified, in several different foods, such as cardoons, colorado pinyons, oyster mushrooms, common chokecherries, and potato. This could make 4-hydroxybenzaldehyde a potential biomarker for the consumption of these foods. 4-hydroxybenzaldehyde is a hydroxybenzaldehyde that is benzaldehyde substituted with a hydroxy group at position C-4. It has a role as a plant metabolite, a mouse metabolite and an EC 1.14.17.1 (dopamine beta-monooxygenase) inhibitor. 4-Hydroxybenzaldehyde is a natural product found in Ficus septica, Visnea mocanera, and other organisms with data available. Occurs naturally combined in many glycosides. Constituent of vanillin. Isol. in free state from opium poppy (Papaver somniferum) A hydroxybenzaldehyde that is benzaldehyde substituted with a hydroxy group at position C-4. 4-Hydroxybenzaldehyde. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=123-08-0 (retrieved 2024-07-02) (CAS RN: 123-08-0). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations.

   

Quercetin

2-(3,4-dihydroxyphenyl)-3,5,7-trihydroxy-4H-chromen-4-one

C15H10O7 (302.0427)


Quercetin appears as yellow needles or yellow powder. Converts to anhydrous form at 203-207 °F. Alcoholic solutions taste very bitter. (NTP, 1992) Quercetin is a pentahydroxyflavone having the five hydroxy groups placed at the 3-, 3-, 4-, 5- and 7-positions. It is one of the most abundant flavonoids in edible vegetables, fruit and wine. It has a role as an antibacterial agent, an antioxidant, a protein kinase inhibitor, an antineoplastic agent, an EC 1.10.99.2 [ribosyldihydronicotinamide dehydrogenase (quinone)] inhibitor, a plant metabolite, a phytoestrogen, a radical scavenger, a chelator, an Aurora kinase inhibitor and a geroprotector. It is a pentahydroxyflavone and a 7-hydroxyflavonol. It is a conjugate acid of a quercetin-7-olate. Quercetin is a flavonol widely distributed in plants. It is an antioxidant, like many other phenolic heterocyclic compounds. Glycosylated forms include RUTIN and quercetrin. Quercetin is a metabolite found in or produced by Escherichia coli (strain K12, MG1655). Quercetin is a flavonoid found in many foods and herbs and is a regular component of a normal diet. Extracts of quercetin have been used to treat or prevent diverse conditions including cardiovascular disease, hypercholesterolemia, rheumatic diseases, infections and cancer but have not been shown to be effective in clinical trials for any medical condition. Quercetin as a nutritional supplement is well tolerated and has not been linked to serum enzyme elevations or to episodes of clinically apparent liver injury. Quercetin is a natural product found in Lotus ucrainicus, Visnea mocanera, and other organisms with data available. Quercetin is a polyphenolic flavonoid with potential chemopreventive activity. Quercetin, ubiquitous in plant food sources and a major bioflavonoid in the human diet, may produce antiproliferative effects resulting from the modulation of either EGFR or estrogen-receptor mediated signal transduction pathways. Although the mechanism of action of action is not fully known, the following effects have been described with this agent in vitro: decreased expression of mutant p53 protein and p21-ras oncogene, induction of cell cycle arrest at the G1 phase and inhibition of heat shock protein synthesis. This compound also demonstrates synergy and reversal of the multidrug resistance phenotype, when combined with chemotherapeutic drugs, in vitro. Quercetin also produces anti-inflammatory and anti-allergy effects mediated through the inhibition of the lipoxygenase and cyclooxygenase pathways, thereby preventing the production of pro-inflammatory mediators. Quercetin is a flavonoid widely distributed in many plants and fruits including red grapes, citrus fruit, tomato, broccoli and other leafy green vegetables, and a number of berries, including raspberries and cranberries. Quercetin itself (aglycone quercetin), as opposed to quercetin glycosides, is not a normal dietary component. Quercitin glycosides are converted to phenolic acids as they pass through the gastrointestinal tract. Quercetin has neither been confirmed scientifically as a specific therapeutic for any condition nor been approved by any regulatory agency. The U.S. Food and Drug Administration has not approved any health claims for quercetin. Nevertheless, the interest in dietary flavonoids has grown after the publication of several epidemiological studies showing an inverse correlation between dietary consumption of flavonols and flavones and reduced incidence and mortality from cardiovascular disease and cancer. In recent years, a large amount of experimental and some clinical data have accumulated regarding the effects of flavonoids on the endothelium under physiological and pathological conditions. The meta-analysis of seven prospective cohort studies concluded that the individuals in the top third of dietary flavonol intake are associated with a reduced risk of mortality from coronary heart disease as compared with those in the bottom third, after adju... Quercetin is a flavonoid widely distributed in many plants and fruits including red grapes, citrus fruit, tomato, broccoli and other leafy green vegetables, and a number of berries, including raspberries and cranberries. Quercetin itself (aglycone quercetin), as opposed to quercetin glycosides, is not a normal dietary component. Quercetin glycosides are converted to phenolic acids as they pass through the gastrointestinal tract. Quercetin has neither been confirmed scientifically as a specific therapeutic for any condition nor been approved by any regulatory agency. The U.S. Food and Drug Administration has not approved any health claims for quercetin. Nevertheless, the interest in dietary flavonoids has grown after the publication of several epidemiological studies showing an inverse correlation between dietary consumption of flavonols and flavones and reduced incidence and mortality from cardiovascular disease and cancer. In recent years, a large amount of experimental and some clinical data have accumulated regarding the effects of flavonoids on the endothelium under physiological and pathological conditions. The meta-analysis of seven prospective cohort studies concluded that the individuals in the top third of dietary flavonol intake are associated with a reduced risk of mortality from coronary heart disease as compared with those in the bottom third, after adjustment for known risk factors and other dietary components. A limited number of intervention studies with flavonoids and flavonoid containing foods and extracts has been performed in several pathological conditions (PMID:17015250). Quercetin is isolated from many plants, especially fruits, such as Helichrysum, Euphorbia and Karwinskia spp. Present in the Solanaceae, Rhamnaceae, Passifloraceae and many other families. For example detected in almost all studied Umbelliferae. Nutriceutical with antiinflammatory props. and a positive influence on the blood lipid profile. Found in a wide variety of foods especially apples, bee pollen, blackcurrants, capers, cocoa, cranberries, dock leaves, elderberries, fennel, lovage, red onions, ancho peppers, dill weed and tarragon. A pentahydroxyflavone having the five hydroxy groups placed at the 3-, 3-, 4-, 5- and 7-positions. It is one of the most abundant flavonoids in edible vegetables, fruit and wine. COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials D020011 - Protective Agents > D000975 - Antioxidants Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4014; ORIGINAL_PRECURSOR_SCAN_NO 4012 INTERNAL_ID 298; CONFIDENCE standard compound; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4011; ORIGINAL_PRECURSOR_SCAN_NO 4010 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4019; ORIGINAL_PRECURSOR_SCAN_NO 4018 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4017; ORIGINAL_PRECURSOR_SCAN_NO 4016 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4011; ORIGINAL_PRECURSOR_SCAN_NO 4010 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4096; ORIGINAL_PRECURSOR_SCAN_NO 4094 CONFIDENCE standard compound; INTERNAL_ID 298; DATASET 20200303_ENTACT_RP_MIX505; DATA_PROCESSING MERGING RMBmix ver. 0.2.7; DATA_PROCESSING PRESCREENING Shinyscreen ver. 0.8.0; ORIGINAL_ACQUISITION_NO 4024; ORIGINAL_PRECURSOR_SCAN_NO 4023 Acquisition and generation of the data is financially supported in part by CREST/JST. [Raw Data] CB109_Quercetin_pos_30eV_CB000041.txt IPB_RECORD: 1761; CONFIDENCE confident structure [Raw Data] CB109_Quercetin_pos_10eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_20eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_40eV_CB000041.txt [Raw Data] CB109_Quercetin_pos_50eV_CB000041.txt IPB_RECORD: 161; CONFIDENCE confident structure [Raw Data] CB109_Quercetin_neg_40eV_000027.txt [Raw Data] CB109_Quercetin_neg_50eV_000027.txt [Raw Data] CB109_Quercetin_neg_20eV_000027.txt [Raw Data] CB109_Quercetin_neg_30eV_000027.txt [Raw Data] CB109_Quercetin_neg_10eV_000027.txt CONFIDENCE standard compound; INTERNAL_ID 124 CONFIDENCE standard compound; ML_ID 54 Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1]. Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1].

   

Pinoresinol

PHENOL, 4,4-(TETRAHYDRO-1H,3H-FURO(3,4-C)FURAN-1,4-DIYL)BIS(2-METHOXY-, (1S-(1.ALPHA.,3A.ALPHA.,4.BETA.,6A.ALPHA.))-

C20H22O6 (358.1416)


Epipinoresinol is an enantiomer of pinoresinol having (+)-(1R,3aR,4S,6aR)-configuration. It has a role as a plant metabolite and a marine metabolite. Epipinoresinol is a natural product found in Pandanus utilis, Abeliophyllum distichum, and other organisms with data available. An enantiomer of pinoresinol having (+)-(1R,3aR,4S,6aR)-configuration. (+)-pinoresinol is an enantiomer of pinoresinol having (+)-1S,3aR,4S,6aR-configuration. It has a role as a hypoglycemic agent, a plant metabolite and a phytoestrogen. Pinoresinol is a natural product found in Pandanus utilis, Zanthoxylum beecheyanum, and other organisms with data available. See also: Acai fruit pulp (part of). An enantiomer of pinoresinol having (+)-1S,3aR,4S,6aR-configuration. relative retention time with respect to 9-anthracene Carboxylic Acid is 0.907 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.905 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.897 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.895 Pinoresinol is a lignol of plant origin serving for defense in a caterpillar. Pinoresinol drastically sensitizes cancer cells against TNF-related apoptosis-inducing ligand (TRAIL) -induced apoptosis[1][2]. Pinoresinol is a lignol of plant origin serving for defense in a caterpillar. Pinoresinol drastically sensitizes cancer cells against TNF-related apoptosis-inducing ligand (TRAIL) -induced apoptosis[1][2].

   

Sugiol

9(1H)-Phenanthrenone, 2,3,4,4a,10,10a-hexahydro-6-hydroxy-1,1,4a-trimethyl-7-(1-methylethyl)-, (4aS-trans)-

C20H28O2 (300.2089)


Sugiol is an abietane diterpenoid that is ferruginol in which the methylene group para to the phenolic hydroxy group has been substituted by an oxo group. It has a role as a plant metabolite, an antiviral agent, an antineoplastic agent, an antioxidant and a radical scavenger. It is an abietane diterpenoid, a carbotricyclic compound, a meroterpenoid, a member of phenols and a cyclic terpene ketone. It is functionally related to a ferruginol. Sugiol is a natural product found in Austrocedrus chilensis, Libocedrus bidwillii, and other organisms with data available. An abietane diterpenoid that is ferruginol in which the methylene group para to the phenolic hydroxy group has been substituted by an oxo group.

   

10-Deacetylbaccatin III

7-epi-10-Deacetylbaccatin III

C29H36O10 (544.2308)


relative retention time with respect to 9-anthracene Carboxylic Acid is 0.908 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.907 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.902 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.898 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 2261 10-Deacetylbaccatin-III is an intermediate for taxol analog preparations. IC50 value: Target: Taxols have exhibit antitumor agents. Several of these taxols can be synthesized from 10- Deacetylbaccatin-III. 10-Deacetylbaccine III is the fifth intermediate of paclitaxel biosynthesis. The biosynthetic pathway consists of approximately 20 enzymatic steps but is not fully elucidated. 10-Deacetylbaccine III is an antineoplastic agent and an anti-cancer intermediate. 10-Deacetylbaccatin-III is an intermediate for taxol analog preparations. IC50 value: Target: Taxols have exhibit antitumor agents. Several of these taxols can be synthesized from 10- Deacetylbaccatin-III. 10-Deacetylbaccine III is the fifth intermediate of paclitaxel biosynthesis. The biosynthetic pathway consists of approximately 20 enzymatic steps but is not fully elucidated. 10-Deacetylbaccine III is an antineoplastic agent and an anti-cancer intermediate.

   

Oleic acid

Emersol 221 low titer white oleic acid

C18H34O2 (282.2559)


Oleic acid (or 9Z)-Octadecenoic acid) is an unsaturated C-18 or an omega-9 fatty acid that is the most widely distributed and abundant fatty acid in nature. It occurs naturally in various animal and vegetable fats and oils. It is an odorless, colorless oil, although commercial samples may be yellowish. The name derives from the Latin word oleum, which means oil. Oleic acid is the most abundant fatty acid in human adipose tissue, and the second most abundant in human tissues overall, following palmitic acid. Oleic acid is a component of the normal human diet, being a part of animal fats and vegetable oils. Triglycerides of oleic acid represent the majority of olive oil (about 70\\\\%). Oleic acid triglycerides also make up 59–75\\\\% of pecan oil, 61\\\\% of canola oil, 36–67\\\\% of peanut oil, 60\\\\% of macadamia oil, 20–80\\\\% of sunflower oil, 15–20\\\\% of grape seed oil, sea buckthorn oil, 40\\\\% of sesame oil, and 14\\\\% of poppyseed oil. High oleic variants of plant sources such as sunflower (~80\\\\%) and canola oil (70\\\\%) also have been developed. consumption has been associated with decreased low-density lipoprotein (LDL) cholesterol, and possibly with increased high-density lipoprotein (HDL) cholesterol, however, the ability of oleic acid to raise HDL is still debated. Oleic acid may be responsible for the hypotensive (blood pressure reducing) effects of olive oil that is considered a health benefit. Oleic acid is used in manufacturing of surfactants, soaps, plasticizers. It is also used as an emulsifying agent in foods and pharmaceuticals. Oleic acid is used commercially in the preparation of oleates and lotions, and as a pharmaceutical solvent. Major constituent of plant oils e.g. olive oil (ca. 80\\\\%), almond oil (ca. 80\\\\%) and many others, mainly as glyceride. Constituent of tall oiland is also present in apple, melon, raspberry oil, tomato, banana, roasted peanuts, black tea, rice bran, cardamon, plum brandy, peated malt, dairy products and various animal fats. Component of citrus fruit coatings. Emulsifying agent in foods CONFIDENCE standard compound; INTERNAL_ID 290 COVID info from WikiPathways Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS Oleic acid (9-cis-Octadecenoic acid) is an abundant monounsaturated fatty acid[1]. Oleic acid is a Na+/K+ ATPase activator[2]. Oleic acid (9-cis-Octadecenoic acid) is an abundant monounsaturated fatty acid[1]. Oleic acid is a Na+/K+ ATPase activator[2].

   

Matairesinol

(3R,4R)-Dihydro-3,4-bis[(4-hydroxy-3-methoxyphenyl)methyl]-2(3H)-furanone; (-)-Matairesinol; (8R,8R)-(-)-Matairesinol

C20H22O6 (358.1416)


Matairesinol belongs to the class of organic compounds known as dibenzylbutyrolactone lignans. These are lignan compounds containing a 3,4-dibenzyloxolan-2-one moiety. Matairesinol is an extremely weak basic (essentially neutral) compound (based on its pKa). Outside of the human body, matairesinol is found, on average, in the highest concentration in a few different foods such as sesame, burdocks, and flaxseeds, and in a lower concentration in oats, asparagus, and poppies. Matairesinol has also been detected, but not quantified in, several different foods, such as silver lindens, tamarinds, cherry tomato, skunk currants, and fireweeds. This could make matairesinol a potential biomarker for the consumption of these foods. Matairesinol is composed of gamma-butyrolactone in which the 3 and 4 positions are substituted by 4-hydroxy-3-methoxybenzyl groups (the 3R,4R-diastereomer). (-)-matairesinol is a lignan that is gamma-butyrolactone in which the 3 and 4 positions are substituted by 4-hydroxy-3-methoxybenzyl groups (the 3R,4R-diastereomer). It has a role as a phytoestrogen, a plant metabolite, an angiogenesis inhibitor and an anti-asthmatic agent. It is a polyphenol, a lignan and a gamma-lactone. Matairesinol is a natural product found in Crossosoma bigelovii, Brassica oleracea var. sabauda, and other organisms with data available. See also: Arctium lappa fruit (part of); Pumpkin Seed (part of). Matairesinol is a plant lignan. It occurs with secoisolariciresinol in numerous foods such as oil seeds, whole grains, vegetables, and fruits. (-)-Matairesinol is found in many foods, some of which are caraway, pecan nut, cereals and cereal products, and longan. A lignan that is gamma-butyrolactone in which the 3 and 4 positions are substituted by 4-hydroxy-3-methoxybenzyl groups (the 3R,4R-diastereomer). Matairesinol confers anti-allergic effects in an allergic dermatitis mouse model. DfE-induced changes in IL-4 and IFN-γ mRNA expression in the ears of NC/Nga mice were reversed by matairesinol application[1]. Matairesinol confers anti-allergic effects in an allergic dermatitis mouse model. DfE-induced changes in IL-4 and IFN-γ mRNA expression in the ears of NC/Nga mice were reversed by matairesinol application[1].

   

Honokiol

2-[4-hydroxy-3-(prop-2-en-1-yl)phenyl]-4-(prop-2-en-1-yl)phenol

C18H18O2 (266.1307)


D002492 - Central Nervous System Depressants > D014149 - Tranquilizing Agents > D014151 - Anti-Anxiety Agents D002491 - Central Nervous System Agents > D011619 - Psychotropic Drugs > D014149 - Tranquilizing Agents D002491 - Central Nervous System Agents > D002492 - Central Nervous System Depressants D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D005765 - Gastrointestinal Agents D000890 - Anti-Infective Agents D000970 - Antineoplastic Agents D018926 - Anti-Allergic Agents D004791 - Enzyme Inhibitors Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4].

   

Pimaric acid

Dextropimaric acid

C20H30O2 (302.2246)


relative retention time with respect to 9-anthracene Carboxylic Acid is 1.561 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.568 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.560

   

Baccatin III

Baccatin III

C31H38O11 (586.2414)


C274 - Antineoplastic Agent > C186664 - Cytotoxic Chemotherapeutic Agent > C273 - Antimitotic Agent relative retention time with respect to 9-anthracene Carboxylic Acid is 1.041 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.042 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.019 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.027 Baccatin III is a natural product isolated from Pacific yew tree and related species. Baccatin III reduces tumor progression by inhibiting the accumulation and suppressive function of MDSCs[1]. Baccatin III is a natural product isolated from Pacific yew tree and related species. Baccatin III reduces tumor progression by inhibiting the accumulation and suppressive function of MDSCs[1].

   

(+)-lariciresinol

4-[(2S,3R,4R)-4-[(4-hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl]-2-methoxyphenol

C20H24O6 (360.1573)


(+)-Lariciresinol belongs to the class of organic compounds known as 7,9-epoxylignans. These are lignans that contain the 7,9-epoxylignan skeleton, which consists of a tetrahydrofuran that carries a phenyl group, a methyl group, and a benzyl group at positons 2, 3 and 4, respectively. (+)-Lariciresinol has been detected in several different foods, such as parsnips, white mustards, narrowleaf cattails, turnips, and common sages. This could make (+)-Lariciresinol a potential biomarker for the consumption of these foods. Lariciresinol is also found in sesame seeds, Brassica vegetables, in the bark and wood of white fir (Abies alba). (+)-lariciresinol is a member of the class of compounds known as 7,9-epoxylignans. 7,9-epoxylignans are lignans that contain the 7,9-epoxylignan skeleton, which consists of a tetrahydrofuran that carries a phenyl group, a methyl group, and a benzyl group at the 2-, 3-, 4-position, respectively (+)-lariciresinol is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). (+)-lariciresinol can be found in a number of food items such as pili nut, lemon balm, root vegetables, and parsley, which makes (+)-lariciresinol a potential biomarker for the consumption of these food products.

   

Dihydroconiferyl alcohol

3-(4-hydroxy-3-methoxyphenyl)-propan-1-ol

C10H14O3 (182.0943)


Dihydroconiferyl alcohol, also known as 3-(4-guaiacyl)propanol or 3-(4-hydroxy-3-methoxyphenyl)-propan-1-ol, is a member of the class of compounds known as methoxyphenols. Methoxyphenols are compounds containing a methoxy group attached to the benzene ring of a phenol moiety. Dihydroconiferyl alcohol is slightly soluble (in water) and a very weakly acidic compound (based on its pKa). Dihydroconiferyl alcohol can be found in lettuce and romaine lettuce, which makes dihydroconiferyl alcohol a potential biomarker for the consumption of these food products. Dihydroconiferyl alcohol is a cell division factor that can be found in pring sap of Acer pseudoplatanus L. Dihydroconiferyl alcohol can stimulate growth of soybean callus[1].

   

Dihydrocubebin

2,3-Bis(1,3-benzodioxol-5-ylmethyl)-1,4-butanediol, 9ci

C20H22O6 (358.1416)


Dihydrocubebin is found in herbs and spices. Dihydrocubebin is isolated from Piper cubeba (cubeb pepper Isolated from Piper cubeba (cubeb pepper). Dihydrocubebin is found in ucuhuba and herbs and spices.

   

Honokiol

InChI=1/C18H18O2/c1-3-5-13-7-9-18(20)16(11-13)14-8-10-17(19)15(12-14)6-4-2/h3-4,7-12,19-20H,1-2,5-6H

C18H18O2 (266.1307)


Honokiol is a member of biphenyls. Honokiol is a natural product found in Illicium simonsii, Illicium fargesii, and other organisms with data available. D002492 - Central Nervous System Depressants > D014149 - Tranquilizing Agents > D014151 - Anti-Anxiety Agents D002491 - Central Nervous System Agents > D011619 - Psychotropic Drugs > D014149 - Tranquilizing Agents D002491 - Central Nervous System Agents > D002492 - Central Nervous System Depressants D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D005765 - Gastrointestinal Agents D000890 - Anti-Infective Agents D000970 - Antineoplastic Agents D018926 - Anti-Allergic Agents D004791 - Enzyme Inhibitors Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4].

   

Pinoresinol

Phenol,4-(tetrahydro-1H,3H-furo[3,4-c]furan-1,4-diyl)bis[2-methoxy-, [1S-(1.alpha.,3a.alpha.,4.alpha.,6a.alpha.)]-

C20H22O6 (358.1416)


4-[6-(4-Hydroxy-3-methoxyphenyl)-1,3,3a,4,6,6a-hexahydrofuro[3,4-c]furan-3-yl]-2-methoxyphenol is a natural product found in Zanthoxylum riedelianum, Forsythia suspensa, and other organisms with data available. Pinoresinol is a lignol of plant origin serving for defense in a caterpillar. Pinoresinol drastically sensitizes cancer cells against TNF-related apoptosis-inducing ligand (TRAIL) -induced apoptosis[1][2]. Pinoresinol is a lignol of plant origin serving for defense in a caterpillar. Pinoresinol drastically sensitizes cancer cells against TNF-related apoptosis-inducing ligand (TRAIL) -induced apoptosis[1][2].

   

Sugiol

6-hydroxy-1,1,4a-trimethyl-7-(propan-2-yl)-1,2,3,4,4a,9,10,10a-octahydrophenanthren-9-one

C20H28O2 (300.2089)


Sugiol is found in fruits. Sugiol is a constituent of Juniperus communis (juniper). Constituent of Juniperus communis (juniper). Sugiol is found in fruits.

   

10-Deacetylbaccatin III

4-(acetyloxy)-1,9,12,15-tetrahydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

C29H36O10 (544.2308)


   

7'-Hydroxymatairesinol

3-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-4-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-2-one

C20H22O7 (374.1365)


   

Baccatin III

[(1S,2S,3R,4S,7R,9S,10S,12R,15S)-4,12-diacetyloxy-1,9,15-trihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0^{3,10.0^{4,7]heptadec-13-en-2-yl] benzoate

C31H38O11 (586.2414)


   

hydroxymatairesinol

4-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-3-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-2-one

C20H22O7 (374.1365)


   

Isotaxiresinol

4-[7-hydroxy-2,3-bis(hydroxymethyl)-6-methoxy-1,2,3,4-tetrahydronaphthalen-1-yl]benzene-1,2-diol

C19H22O6 (346.1416)


   

Lariciresinol

4-{4-[(4-hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl}-2-methoxyphenol

C20H24O6 (360.1573)


(-)-lariciresinol is a member of the class of compounds known as 7,9-epoxylignans. 7,9-epoxylignans are lignans that contain the 7,9-epoxylignan skeleton, which consists of a tetrahydrofuran that carries a phenyl group, a methyl group, and a benzyl group at the 2-, 3-, 4-position, respectively (-)-lariciresinol is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). (-)-lariciresinol can be found in a number of food items such as cassava, acorn, celeriac, and banana, which makes (-)-lariciresinol a potential biomarker for the consumption of these food products.

   

Ponasterone A

14-(2,3-dihydroxy-6-methylheptan-2-yl)-4,5,11-trihydroxy-2,15-dimethyltetracyclo[8.7.0.0^{2,7}.0^{11,15}]heptadec-9-en-8-one

C27H44O6 (464.3138)


   

Taxiresinol

4-{4-[(4-hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl}benzene-1,2-diol

C19H22O6 (346.1416)


   

Cyclolariciresinol

(6R,7R,8S)-8-(4-hydroxy-3-methoxyphenyl)-6,7-bis(hydroxymethyl)-3-methoxy-5,6,7,8-tetrahydronaphthalen-2-ol

C20H24O6 (360.1573)


Cyclolariciresinol is a member of the class of compounds known as 9,9p-dihydroxyaryltetralin lignans. 9,9p-dihydroxyaryltetralin lignans are lignans with a structure based on the 1-phenyltetralin skeleton carrying a hydroxyl group at the 9- and the 9- position. Cyclolariciresinol is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Cyclolariciresinol can be found in sesame, which makes cyclolariciresinol a potential biomarker for the consumption of this food product.

   

Isovanillin

InChI=1/C8H8O3/c1-11-8-3-2-6(5-9)4-7(8)10/h2-5,10H,1H

C8H8O3 (152.0473)


Isovanillin is a member of the class of benzaldehydes that is 4-methoxybenzaldehyde substituted by a hydroxy group at position 3. It is an inhibitor of aldehyde oxidase. It has a role as an EC 1.2.3.1 (aldehyde oxidase) inhibitor, a plant metabolite, an antidiarrhoeal drug, an antifungal agent, a HIV protease inhibitor and an animal metabolite. It is a member of phenols, a monomethoxybenzene and a member of benzaldehydes. Isovanillin is a natural product found in Ficus erecta var. beecheyana, Sphallerocarpus gracilis, and other organisms with data available. A member of the class of benzaldehydes that is 4-methoxybenzaldehyde substituted by a hydroxy group at position 3. It is an inhibitor of aldehyde oxidase. D004791 - Enzyme Inhibitors Isovanillin is an aldehyde oxidase inhibitor[1]. Antispasmodic activities[2]. Antidiarrheal activities[3]. Isovanillin is an aldehyde oxidase inhibitor[1]. Antispasmodic activities[2]. Antidiarrheal activities[3].

   

cytochalasin D

cytochalasin D

C30H37NO6 (507.2621)


An organic heterotricyclic compound that is a mycotoxin produced by Helminthosporium and other moulds which is cell permeable and a potent inhibitor of actin polymerisation and DNA synthesis.

   

3-Hydroxy-4-methoxybenzaldehyde

3-Hydroxy-4-methoxybenzaldehyde

C8H8O3 (152.0473)


   

Taxamairin A

Taxamairin A

C21H22O4 (338.1518)


   
   

sandaracopimaric acid

(-)-Sandaracopimaric acid

C20H30O2 (302.2246)


A pimarane diterpenoid that is (1S,4aS,4bS,7R,10aS)-1,4a,7-trimethyl-1,2,3,4,4a,4b,5,6,7,9,10,10a-dodecahydrophenanthrene carrying a carboxy group at position 1 and a vinyl group at position 7. It is a natural product found in several plant species.

   

sitosterol

17-(5-ethyl-6-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H50O (414.3861)


A member of the class of phytosterols that is stigmast-5-ene substituted by a beta-hydroxy group at position 3. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

coniferyl aldehyde

4-Hydroxy-3-methoxy-trans-cinnamaldehyde

C10H10O3 (178.063)


Annotation level-1 Coniferaldehyde (Ferulaldehyde) is an effective inducer of heme oxygenase-1 (HO-1). Coniferaldehyde exerts anti-inflammatory properties in response to LPS. Coniferaldehyde inhibits LPS-induced apoptosis through the PKCα/β II/Nrf-2/HO-1 dependent pathway in RAW264.7 macrophage cells[1]. Coniferaldehyde (Ferulaldehyde) is an effective inducer of heme oxygenase-1 (HO-1). Coniferaldehyde exerts anti-inflammatory properties in response to LPS. Coniferaldehyde inhibits LPS-induced apoptosis through the PKCα/β II/Nrf-2/HO-1 dependent pathway in RAW264.7 macrophage cells[1].

   

Quercetin

2- (3,4-Dihydroxyphenyl) -3,5,7-trihydroxy-4H-1-benzopyran-4-one

C15H10O7 (302.0427)


Annotation level-1 COVID info from clinicaltrial, clinicaltrials, clinical trial, clinical trials relative retention time with respect to 9-anthracene Carboxylic Acid is 0.898 D020011 - Protective Agents > D000975 - Antioxidants Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS relative retention time with respect to 9-anthracene Carboxylic Acid is 0.902 Acquisition and generation of the data is financially supported by the Max-Planck-Society IPB_RECORD: 1981; CONFIDENCE confident structure IPB_RECORD: 3301; CONFIDENCE confident structure IPB_RECORD: 3283; CONFIDENCE confident structure Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1]. Quercetin, a natural flavonoid, is a stimulator of recombinant SIRT1 and also a PI3K inhibitor with IC50 of 2.4 μM, 3.0 μM and 5.4 μM for PI3K γ, PI3K δ and PI3K β, respectively[1].

   

sphaeropsidin B

sphaeropsidin B

C20H28O5 (348.1937)


A natural product found in Diplodia cupressi.

   

Dihydrocubebin

1,4-Butanediol, 2,3-bis(1,3-benzodioxol-5-ylmethyl)-, [R-(R*,R*)]-

C20H22O6 (358.1416)


Dihydrocubebin is a glycol that is butane-1,4-diol substituted at the 2- and 3-positions by (1,3-benzodioxol-5-yl)methyl groups (the R,R-configuration). It is a lignan, a member of butanediols, a glycol and a member of benzodioxoles. Dihydrocubebin is a natural product found in Podolepis rugata, Horsfieldia irya, and other organisms with data available. A glycol that is butane-1,4-diol substituted at the 2- and 3-positions by (1,3-benzodioxol-5-yl)methyl groups (the R,R-configuration).

   

Lariciresinol

3-Furanmethanol, tetrahydro-2-(4-hydroxy-3-methoxyphenyl)-4-((4-hydroxy-3-methoxyphenyl)methyl)-, (2R-(2alpha,3beta,4beta))-

C20H24O6 (360.1573)


(+)-lariciresinol is a lignan that is tetrahydrofuran substituted at positions 2, 3 and 4 by 4-hydroxy-3-methoxyphenyl, hydroxymethyl and 4-hydroxy-3-methoxybenzyl groups respectively (the 2S,3R,4R-diastereomer). It has a role as an antifungal agent and a plant metabolite. It is a member of oxolanes, a member of phenols, a lignan, a primary alcohol and an aromatic ether. It is an enantiomer of a (-)-lariciresinol. Lariciresinol is a natural product found in Magnolia kachirachirai, Euterpe oleracea, and other organisms with data available. See also: Acai fruit pulp (part of). A lignan that is tetrahydrofuran substituted at positions 2, 3 and 4 by 4-hydroxy-3-methoxyphenyl, hydroxymethyl and 4-hydroxy-3-methoxybenzyl groups respectively (the 2S,3R,4R-diastereomer). (-)-lariciresinol is a member of the class of compounds known as 7,9-epoxylignans. 7,9-epoxylignans are lignans that contain the 7,9-epoxylignan skeleton, which consists of a tetrahydrofuran that carries a phenyl group, a methyl group, and a benzyl group at the 2-, 3-, 4-position, respectively (-)-lariciresinol is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). (-)-lariciresinol can be found in a number of food items such as ostrich fern, pepper (c. frutescens), ohelo berry, and guava, which makes (-)-lariciresinol a potential biomarker for the consumption of these food products. Annotation level-1 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.823 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.820 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.818 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.812

   

Isotaxiresinol

2,3-Naphthalenedimethanol, 1-(3,4-dihydroxyphenyl)-1,2,3,4-tetrahydro-7-hydroxy-6-methoxy-, stereoisomer (8CI); (1S,2R,3R)-1-(3,4-Dihydroxyphenyl)-1,2,3,4-tetrahydro-7-hydroxy-6-methoxy-2,3-naphthalenedimethanol

C19H22O6 (346.1416)


Isotaxiresinol is a lignan that consists of 1,2,3,4-tetrahydronaphthalene substituted by a hydroxy group at position 7, hydroxymethyl groups at positions 2 and 3, a methoxy group at position 6 and a 3,4-dihydroxyphenyl group at position 1. It has been isolated from Taxus yunnanensis. It has a role as a plant metabolite. It is a lignan, a pentol, a polyphenol and a primary alcohol. Isotaxiresinol is a natural product found in Fitzroya cupressoides, Taxus wallichiana, and other organisms with data available. A lignan that consists of 1,2,3,4-tetrahydronaphthalene substituted by a hydroxy group at position 7, hydroxymethyl groups at positions 2 and 3, a methoxy group at position 6 and a 3,4-dihydroxyphenyl group at position 1. It has been isolated from Taxus yunnanensis.

   

Honokiol

InChI=1\C18H18O2\c1-3-5-13-7-9-18(20)16(11-13)14-8-10-17(19)15(12-14)6-4-2\h3-4,7-12,19-20H,1-2,5-6H

C18H18O2 (266.1307)


D002492 - Central Nervous System Depressants > D014149 - Tranquilizing Agents > D014151 - Anti-Anxiety Agents D002491 - Central Nervous System Agents > D011619 - Psychotropic Drugs > D014149 - Tranquilizing Agents D002491 - Central Nervous System Agents > D002492 - Central Nervous System Depressants D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D005765 - Gastrointestinal Agents D000890 - Anti-Infective Agents D000970 - Antineoplastic Agents D018926 - Anti-Allergic Agents D004791 - Enzyme Inhibitors Annotation level-1 Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4]. Honokiol is a bioactive, biphenolic phytochemical that possesses potent antioxidative, anti-inflammatory, antiangiogenic, and anticancer activities by targeting a variety of signaling molecules. It inhibits the activation of Akt. Honokiol can readily cross the blood brain barrier[1][2][3][4].

   

Matairesinol

NCGC00169701-03_C20H22O6_2(3H)-Furanone, dihydro-3,4-bis[(4-hydroxy-3-methoxyphenyl)methyl]-, (3R,4R)-

C20H22O6 (358.1416)


Annotation level-1 CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 17 INTERNAL_ID 17; CONFIDENCE Reference Standard (Level 1) relative retention time with respect to 9-anthracene Carboxylic Acid is 0.920 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.921 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.910 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.909 Matairesinol confers anti-allergic effects in an allergic dermatitis mouse model. DfE-induced changes in IL-4 and IFN-γ mRNA expression in the ears of NC/Nga mice were reversed by matairesinol application[1]. Matairesinol confers anti-allergic effects in an allergic dermatitis mouse model. DfE-induced changes in IL-4 and IFN-γ mRNA expression in the ears of NC/Nga mice were reversed by matairesinol application[1].

   

Oleic acid

cis-9-Octadecenoic acid

C18H34O2 (282.2559)


An octadec-9-enoic acid in which the double bond at C-9 has Z (cis) stereochemistry. Oleic acid. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=112-80-1 (retrieved 2024-07-16) (CAS RN: 112-80-1). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Elaidic acid is the major trans fat found in hydrogenated vegetable oils and can be used as a pharmaceutical solvent. Elaidic acid is the major trans fat found in hydrogenated vegetable oils and can be used as a pharmaceutical solvent. Oleic acid (9-cis-Octadecenoic acid) is an abundant monounsaturated fatty acid[1]. Oleic acid is a Na+/K+ ATPase activator[2]. Oleic acid (9-cis-Octadecenoic acid) is an abundant monounsaturated fatty acid[1]. Oleic acid is a Na+/K+ ATPase activator[2].

   

p-Hydroxybenzaldehyde

p-Hydroxybenzaldehyde

C7H6O2 (122.0368)


p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations.

   

Ponasterone A

Ponasterone A

C27H44O6 (464.3138)


Ponasterone A (25-Deoxyecdysterone), an ecdysteroid, has strong affinity for the ecdysone receptor. Ponasterone A is a potent regulator of gene expression in cells and transgenic animals, enabling reporter genes to be turned on and off rapidly[1][2].

   

α-Linolenic acid

alpha-Linolenic acid

C18H30O2 (278.2246)


α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1]. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1]. α-Linolenic acid, isolated from Perilla frutescens, is an essential fatty acid that cannot be synthesized by humans. α-Linolenic acid can affect the process of thrombotic through the modulation of PI3K/Akt signaling. α-Linolenic acid possess the anti-arrhythmic properties and is related to cardiovascular disease and cancer[1].

   

4-Hydroxybenzaldehyde

4-Hydroxybenzaldehyde

C7H6O2 (122.0368)


p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations. p-Hydroxybenzaldehyde is a one of the major components in vanilla aroma, with antagonistic effect on GABAA receptor of the α1β2γ2S subtype at high concentrations.

   

3,4-Dihydroxybenzoic acid

3,4-Dihydroxybenzoic acid

C7H6O4 (154.0266)


   

Nortrachelogenin

Nortrachelogenin

C20H22O7 (374.1365)


   

coniferaldehyde

coniferaldehyde

C10H10O3 (178.063)


CONFIDENCE Reference Standard (Level 1); INTERNAL_ID 13

   

Taxiresinol

4-[4-[(4-Hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl]benzene-1,2-diol

C19H22O6 (346.1416)


A lignan that consists of tetrahydrofuran substituted by a 3,4-dihydroxyphenyl group at position 2, a hydroxymethyl group at position 3 and a 4-hydroxy-3-methoxybenzyl group at position 4. It has been isolated from Taxus yunnanensis.

   

α-Conidendrin

α-Conidendrin

C20H20O6 (356.126)


   

Sphaeropsidin A

Sphaeropsidin A

C20H26O5 (346.178)


A natural product found in Smardaea species and Diplodia cupressi.

   

linoleic

9,12-Octadecadienoic acid, (9E,12E)-

C18H32O2 (280.2402)


Linolelaidic acid (Linoelaidic acid), an omega-6 trans fatty acid, acts as a source of energy. Linolelaidic acid is an essential nutrient, adding in enteral, parenteral, and infant formulas. Linolelaidic acid can be used for heart diseases research[1]. Linolelaidic acid (Linoelaidic acid), an omega-6 trans fatty acid, acts as a source of energy. Linolelaidic acid is an essential nutrient, adding in enteral, parenteral, and infant formulas. Linolelaidic acid can be used for heart diseases research[1].

   

Tanegool

Tanegool

C20H24O7 (376.1522)


A lignan that consists of tetrahydrofuran ring substituted by a 4-hydroxy-3-methoxyphenyl group at position 5, a hydroxyphenyl group at position 4 and a hydroxy(4-hydroxy-3-methoxyphenyl)methyl group at position 3. It has been isolated from Taxus yunnanensis.

   

(7R)-7-Hydroxylariciresinol

(7R)-7-Hydroxylariciresinol

C20H24O7 (376.1522)


A lignan that consists of a tetrahudrofuran substituted by a 4-hydroxy-3-methoxyphenyl group at position 5, a hydroxymethyl group at position 4 and a hydroxy(4-hydroxy-3-methoxyphenyl)methyl group at position 3. It has been isolated from Taxus yunnanensis.

   

(1's,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',7',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-5'-yl acetate

(1's,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',7',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-5'-yl acetate

C30H42O13 (610.2625)


   

(1r,8r,10r)-2,9,10-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (2e)-3-phenylprop-2-enoate

(1r,8r,10r)-2,9,10-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (2e)-3-phenylprop-2-enoate

C35H42O9 (606.2829)


   

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-7'-yl acetate

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-7'-yl acetate

C30H42O13 (610.2625)


   

n-[(1s,2r)-3-{[(1r,2r,3r,4s,7r,10s,12s,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

n-[(1s,2r)-3-{[(1r,2r,3r,4s,7r,10s,12s,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

C47H53NO11 (807.3618)


   

15-hydroxy-13-isopropyl-14-methoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,11,13-pentaene-6,10-dione

15-hydroxy-13-isopropyl-14-methoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,11,13-pentaene-6,10-dione

C21H24O4 (340.1675)


   

[(1r,2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,8,11-pentakis(acetyloxy)-2-hydroxy-1,15-dimethyl-9-methylidene-14-oxo-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

[(1r,2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,8,11-pentakis(acetyloxy)-2-hydroxy-1,15-dimethyl-9-methylidene-14-oxo-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

C37H44O15 (728.268)


   

2',5'-bis(acetyloxy)-1',7',9',10'-tetrahydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5'-bis(acetyloxy)-1',7',9',10'-tetrahydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C26H38O11 (526.2414)


   

(2s,4as,10ar)-2,6-dihydroxy-7-isopropyl-1,1,4a-trimethyl-3,4,10,10a-tetrahydro-2h-phenanthren-9-one

(2s,4as,10ar)-2,6-dihydroxy-7-isopropyl-1,1,4a-trimethyl-3,4,10,10a-tetrahydro-2h-phenanthren-9-one

C20H28O3 (316.2038)


   

9,10-bis(acetyloxy)-5,7-dihydroxy-2-(1-hydroxyethoxy)-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

9,10-bis(acetyloxy)-5,7-dihydroxy-2-(1-hydroxyethoxy)-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C28H42O11 (554.2727)


   

(1r,2s,3e,5r,7s,8z,10r,13s)-2,7,9,10-tetrakis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

(1r,2s,3e,5r,7s,8z,10r,13s)-2,7,9,10-tetrakis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C30H42O12 (594.2676)


   

(1s,9s,10s)-5-isopropyl-3,4-dimethoxy-11,11-dimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6,13-tetraene-8,12,15-trione

(1s,9s,10s)-5-isopropyl-3,4-dimethoxy-11,11-dimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6,13-tetraene-8,12,15-trione

C22H24O6 (384.1573)


   

(4s,6s,7z,9s,10s)-4,6,9-trihydroxy-10-nonyl-3,4,5,6,9,10-hexahydrooxecin-2-one

(4s,6s,7z,9s,10s)-4,6,9-trihydroxy-10-nonyl-3,4,5,6,9,10-hexahydrooxecin-2-one

C18H32O5 (328.225)


   

(1r,2s,3e,5s,7s,8e,10r,13s)-5,9,10-tris(acetyloxy)-2,7-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

(1r,2s,3e,5s,7s,8e,10r,13s)-5,9,10-tris(acetyloxy)-2,7-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C28H40O11 (552.257)


   

2',5',7',9',10'-pentakis(acetyloxy)-1'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5',7',9',10'-pentakis(acetyloxy)-1'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C32H44O14 (652.2731)


   

(1s,2r,3r,4s,7r,9s,10s,11r,12r,15s)-2,9,11,12,15-pentakis(acetyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-4-yl acetate

(1s,2r,3r,4s,7r,9s,10s,11r,12r,15s)-2,9,11,12,15-pentakis(acetyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-4-yl acetate

C32H44O13 (636.2782)


   

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-6,8,9-tris(acetyloxy)-2,4,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-6,8,9-tris(acetyloxy)-2,4,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C28H42O12 (570.2676)


   

(8s)-15-hydroxy-13-isopropyl-14-methoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,11,13-pentaene-6,10-dione

(8s)-15-hydroxy-13-isopropyl-14-methoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,11,13-pentaene-6,10-dione

C21H24O4 (340.1675)


   

(1s,2s,7r,8r,9s,10s,12s,13s,16r)-8,10-bis(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-2-(prop-1-en-2-yl)-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-4-en-7-yl acetate

(1s,2s,7r,8r,9s,10s,12s,13s,16r)-8,10-bis(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-2-(prop-1-en-2-yl)-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-4-en-7-yl acetate

C26H36O10 (508.2308)


   

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',9',10'-tetrakis(acetyloxy)-1',7'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',9',10'-tetrakis(acetyloxy)-1',7'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C30H42O13 (610.2625)


   

(+)-taxusin

(+)-taxusin

C28H40O8 (504.2723)


   

(1r,2s,3s,5s,8r,10r,11s,13r,16s)-5,16-bis(acetyloxy)-10-[(acetyloxy)methyl]-8,9,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

(1r,2s,3s,5s,8r,10r,11s,13r,16s)-5,16-bis(acetyloxy)-10-[(acetyloxy)methyl]-8,9,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

C33H42O13 (646.2625)


   

13-isopropyl-14,15-dimethoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,8,11,13-hexaene-6,10-dione

13-isopropyl-14,15-dimethoxy-7,7-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1(15),2,4,8,11,13-hexaene-6,10-dione

C22H24O4 (352.1675)


   

(1s,3s,8r)-9,10,13-tris(acetyloxy)-2-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl 3-phenylprop-2-enoate

(1s,3s,8r)-9,10,13-tris(acetyloxy)-2-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl 3-phenylprop-2-enoate

C35H44O9 (608.2985)


   

(1r,2r,3r,5s,8r,9r,10r,13s)-9,10,13-tris(acetyloxy)-2-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (3r)-3-(dimethylamino)-3-phenylpropanoate

(1r,2r,3r,5s,8r,9r,10r,13s)-9,10,13-tris(acetyloxy)-2-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (3r)-3-(dimethylamino)-3-phenylpropanoate

C37H51NO9 (653.3564)


   

(1s,3r,4s,7r,10r)-4,12-bis(acetyloxy)-1,9,15-trihydroxy-10-(hydroxymethyl)-14,17,17-trimethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

(1s,3r,4s,7r,10r)-4,12-bis(acetyloxy)-1,9,15-trihydroxy-10-(hydroxymethyl)-14,17,17-trimethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

C31H38O12 (602.2363)


   

[2,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

[2,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

C28H38O10 (534.2465)


   

4,6,9-trihydroxy-10-nonyl-3,4,5,6,9,10-hexahydrooxecin-2-one

4,6,9-trihydroxy-10-nonyl-3,4,5,6,9,10-hexahydrooxecin-2-one

C18H32O5 (328.225)


   

4-{4-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl}-2-methoxyphenol

4-{4-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-3-(hydroxymethyl)oxolan-2-yl}-2-methoxyphenol

C20H24O7 (376.1522)


   

(1r,2s,3e,5s,7e,10r,13s)-2,10-bis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

(1r,2s,3e,5s,7e,10r,13s)-2,10-bis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

C26H36O9 (492.2359)


   
   

(1r,2s,3s,5s,8r,9r,10r,11s,13r,16s)-2,8,11-tris(acetyloxy)-5,9-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-16-yl acetate

(1r,2s,3s,5s,8r,9r,10r,11s,13r,16s)-2,8,11-tris(acetyloxy)-5,9-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-16-yl acetate

C28H40O12 (568.252)


   

[(2r,3r,4s,5r,6s)-3,4,5-tris(acetyloxy)-6-{[(4br,8ar,10s)-10-(acetyloxy)-4b-[(acetyloxy)methyl]-4-hydroxy-2-isopropyl-8,8-dimethyl-7-oxo-6,8a,9,10-tetrahydro-5h-phenanthren-3-yl]oxy}oxan-2-yl]methyl acetate

[(2r,3r,4s,5r,6s)-3,4,5-tris(acetyloxy)-6-{[(4br,8ar,10s)-10-(acetyloxy)-4b-[(acetyloxy)methyl]-4-hydroxy-2-isopropyl-8,8-dimethyl-7-oxo-6,8a,9,10-tetrahydro-5h-phenanthren-3-yl]oxy}oxan-2-yl]methyl acetate

C38H50O16 (762.3099)


   

2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl 3-(dimethylamino)-2-hydroxy-3-phenylpropanoate

2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl 3-(dimethylamino)-2-hydroxy-3-phenylpropanoate

C43H57NO15 (827.3728)


   

(1r,10r,12s)-3,12-dihydroxy-5-isopropyl-4-methoxy-11,11-dimethyl-13-oxatetracyclo[10.2.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6-trien-8-one

(1r,10r,12s)-3,12-dihydroxy-5-isopropyl-4-methoxy-11,11-dimethyl-13-oxatetracyclo[10.2.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6-trien-8-one

C21H28O5 (360.1937)


   

(1r,2s,3e,6r,7e,9r,11r)-4,8,15,15-tetramethyl-12-methylidenebicyclo[9.3.1]pentadeca-3,7-diene-2,6,9-triol

(1r,2s,3e,6r,7e,9r,11r)-4,8,15,15-tetramethyl-12-methylidenebicyclo[9.3.1]pentadeca-3,7-diene-2,6,9-triol

C20H32O3 (320.2351)


   

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r)-2',5'-bis(acetyloxy)-1',7',9',10'-tetrahydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r)-2',5'-bis(acetyloxy)-1',7',9',10'-tetrahydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C26H38O11 (526.2414)


   

4-[4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]benzene-1,2-diol

4-[4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]benzene-1,2-diol

C19H20O6 (344.126)


   

[(1r,2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,11-tetrakis(acetyloxy)-2-hydroxy-1,15-dimethyl-9-methylidene-14-oxo-8-{[(2e)-3-phenylprop-2-enoyl]oxy}-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

[(1r,2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,11-tetrakis(acetyloxy)-2-hydroxy-1,15-dimethyl-9-methylidene-14-oxo-8-{[(2e)-3-phenylprop-2-enoyl]oxy}-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

C44H48O15 (816.2993)


   

[2,4,6,8,9-pentakis(acetyloxy)-10-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[2,4,6,8,9-pentakis(acetyloxy)-10-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C32H46O14 (654.2887)


   

(2r,3z,5s,7s,8e,10s,11r,13s)-2,3,10-tris(acetyloxy)-7,13-dihydroxy-8-(hydroxymethyl)-4,14,15,15-tetramethylbicyclo[9.3.1]pentadeca-1(14),3,8-trien-5-yl acetate

(2r,3z,5s,7s,8e,10s,11r,13s)-2,3,10-tris(acetyloxy)-7,13-dihydroxy-8-(hydroxymethyl)-4,14,15,15-tetramethylbicyclo[9.3.1]pentadeca-1(14),3,8-trien-5-yl acetate

C28H40O11 (552.257)


   

[5,7,9,10,13-pentakis(acetyloxy)-2,4-dihydroxy-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-4-yl]methyl benzoate

[5,7,9,10,13-pentakis(acetyloxy)-2,4-dihydroxy-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-4-yl]methyl benzoate

C37H48O14 (716.3044)


   

α-conidendrin

NA

C20H20O6 (356.126)


{"Ingredient_id": "HBIN015460","Ingredient_name": "\u03b1-conidendrin","Alias": "NA","Ingredient_formula": "C20H20O6","Ingredient_Smile": "COC1=C(C=C2C(C3COC(=O)C3CC2=C1)C4=CC(=C(C=C4)O)OC)O","Ingredient_weight": "NA","OB_score": "NA","CAS_id": "NA","SymMap_id": "NA","TCMID_id": "3980","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "NA","DrugBank_id": "NA"}

   

2-[4,7,8,10,13-pentakis(acetyloxy)-12-hydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

2-[4,7,8,10,13-pentakis(acetyloxy)-12-hydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

C37H46O14 (714.2887)


   

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-2,6,8,9,10-pentakis(acetyloxy)-4-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-2,6,8,9,10-pentakis(acetyloxy)-4-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C32H46O14 (654.2887)


   

(1r,2s,3e,5s,7s,8z,10r,13s)-7,9,10-tris(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

(1r,2s,3e,5s,7s,8z,10r,13s)-7,9,10-tris(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C28H40O11 (552.257)


   

(1s,3s,10r,13s,16s)-16-(acetyloxy)-10-[(acetyloxy)methyl]-5,8,9,11-tetrahydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

(1s,3s,10r,13s,16s)-16-(acetyloxy)-10-[(acetyloxy)methyl]-5,8,9,11-tetrahydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

C31H40O12 (604.252)


   

(1r,2s,3r,5s,8r,9r,10s,11s,13r,16s)-2,16-bis(acetyloxy)-5,8,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

(1r,2s,3r,5s,8r,9r,10s,11s,13r,16s)-2,16-bis(acetyloxy)-5,8,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

C31H40O11 (588.257)


   

4-[(r)-hydroxy[(3s,4r,5s)-5-(4-hydroxy-3-methoxyphenyl)-4-(hydroxymethyl)oxolan-3-yl]methyl]benzene-1,2-diol

4-[(r)-hydroxy[(3s,4r,5s)-5-(4-hydroxy-3-methoxyphenyl)-4-(hydroxymethyl)oxolan-3-yl]methyl]benzene-1,2-diol

C19H22O7 (362.1365)


   

7,10,13-tris(acetyloxy)-2-hydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

7,10,13-tris(acetyloxy)-2-hydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

C28H38O10 (534.2465)


   

(4as,10as)-5-hydroxy-7-isopropyl-6-methoxy-1,1,4a-trimethyl-3,4,10,10a-tetrahydrophenanthrene-2,9-dione

(4as,10as)-5-hydroxy-7-isopropyl-6-methoxy-1,1,4a-trimethyl-3,4,10,10a-tetrahydrophenanthrene-2,9-dione

C21H28O4 (344.1987)


   

(1's,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',10'-tris(acetyloxy)-1',7',9'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

(1's,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',10'-tris(acetyloxy)-1',7',9'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C28H40O12 (568.252)


   

(1r,2r,3r,5s,8r,9r,10r)-9,10-bis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

(1r,2r,3r,5s,8r,9r,10r)-9,10-bis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

C26H36O8 (476.241)


   

(1s,3s,8s)-7,9,10,13-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl 3-phenylprop-2-enoate

(1s,3s,8s)-7,9,10,13-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl 3-phenylprop-2-enoate

C37H46O10 (650.3091)


   

(2s,4as,10ar)-7-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,6-diol

(2s,4as,10ar)-7-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,6-diol

C20H30O2 (302.2246)


   

(13r)-6-isopropyl-5-methoxy-12,12-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1,3,5,7,10,14-hexaene-4,13-diol

(13r)-6-isopropyl-5-methoxy-12,12-dimethyltricyclo[9.4.0.0³,⁸]pentadeca-1,3,5,7,10,14-hexaene-4,13-diol

C21H26O3 (326.1882)


   

(1s,2s,3r,4s,7r,9s,10s,11r,12r,15s)-2,9,11,12,15-pentakis(acetyloxy)-1-hydroxy-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-4-yl acetate

(1s,2s,3r,4s,7r,9s,10s,11r,12r,15s)-2,9,11,12,15-pentakis(acetyloxy)-1-hydroxy-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-4-yl acetate

C32H44O14 (652.2731)


   

2-[(1s,2s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-4-en-2-yl]propan-2-yl benzoate

2-[(1s,2s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-4-en-2-yl]propan-2-yl benzoate

C33H42O12 (630.2676)


   

(1r,2s,3e,5s,7e,10r,13s)-10-(acetyloxy)-5,13-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-2-yl acetate

(1r,2s,3e,5s,7e,10r,13s)-10-(acetyloxy)-5,13-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-2-yl acetate

C24H34O8 (450.2254)


   

4-[3-(hydroxymethyl)-5-(3-hydroxypropyl)-7-methoxy-2,3-dihydro-1-benzofuran-2-yl]benzene-1,2-diol

4-[3-(hydroxymethyl)-5-(3-hydroxypropyl)-7-methoxy-2,3-dihydro-1-benzofuran-2-yl]benzene-1,2-diol

C19H22O6 (346.1416)


   

2,5,11,16-tetrakis(acetyloxy)-8-hydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

2,5,11,16-tetrakis(acetyloxy)-8-hydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

C35H44O13 (672.2782)


   

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-8,10-bis(acetyloxy)-7,12,13-trihydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-8,10-bis(acetyloxy)-7,12,13-trihydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

C26H38O11 (526.2414)


   

[(1r,2s,3z,5s,7s,8e,10r,13s,15r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-15-(hydroxymethyl)-8,12,15-trimethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,2s,3z,5s,7s,8e,10r,13s,15r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-15-(hydroxymethyl)-8,12,15-trimethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C32H44O14 (652.2731)


   

[(2r,3r,4s,5r,6s)-3,4,5-tris(acetyloxy)-6-{[(1r,8s,10r,12s)-8-(acetyloxy)-3,12-dihydroxy-5-isopropyl-11,11-dimethyl-13-oxatetracyclo[10.2.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6-trien-4-yl]oxy}oxan-2-yl]methyl acetate

[(2r,3r,4s,5r,6s)-3,4,5-tris(acetyloxy)-6-{[(1r,8s,10r,12s)-8-(acetyloxy)-3,12-dihydroxy-5-isopropyl-11,11-dimethyl-13-oxatetracyclo[10.2.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6-trien-4-yl]oxy}oxan-2-yl]methyl acetate

C36H48O15 (720.2993)


   

(1r,2s,3e,5s,7s,8z,10r,13s)-2,9,10-tris(acetyloxy)-5,7-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

(1r,2s,3e,5s,7s,8z,10r,13s)-2,9,10-tris(acetyloxy)-5,7-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C28H40O11 (552.257)


   

2-(acetyloxy)-7,10,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

2-(acetyloxy)-7,10,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

C24H34O8 (450.2254)


   

(3ar,4s,9as)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

(3ar,4s,9as)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

C20H20O6 (356.126)


   

[(2r,3r,4s,5r,6r)-3,4,5-tris(acetyloxy)-6-{[(1r,2r)-1,3-bis(acetyloxy)-1-[4-(acetyloxy)phenyl]propan-2-yl]oxy}oxan-2-yl]methyl 4-(acetyloxy)benzoate

[(2r,3r,4s,5r,6r)-3,4,5-tris(acetyloxy)-6-{[(1r,2r)-1,3-bis(acetyloxy)-1-[4-(acetyloxy)phenyl]propan-2-yl]oxy}oxan-2-yl]methyl 4-(acetyloxy)benzoate

C36H40O18 (760.2215)


   

4,8-bis(acetyloxy)-2,6,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

4,8-bis(acetyloxy)-2,6,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

C31H40O10 (572.2621)


   

(1r,2r,3r,5s,8r,9r,10r,13s)-9,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

(1r,2r,3r,5s,8r,9r,10r,13s)-9,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

C28H40O9 (520.2672)


   

3,9,12-tris(acetyloxy)-14-hydroxy-7,11,16,16-tetramethyl-10-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7-dien-6-yl acetate

3,9,12-tris(acetyloxy)-14-hydroxy-7,11,16,16-tetramethyl-10-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7-dien-6-yl acetate

C28H38O10 (534.2465)


   

4-[(1s,3ar,4r,6ar)-4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]-2-methoxyphenol

4-[(1s,3ar,4r,6ar)-4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]-2-methoxyphenol

C20H22O6 (358.1416)


   

(1s,3s,4s,7s,10s)-4,9,11,12,15-pentakis(acetyloxy)-1-hydroxy-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

(1s,3s,4s,7s,10s)-4,9,11,12,15-pentakis(acetyloxy)-1-hydroxy-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

C37H46O14 (714.2887)


   

2',7',9',10',13'-pentakis(acetyloxy)-5'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-1'-yl acetate

2',7',9',10',13'-pentakis(acetyloxy)-5'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-1'-yl acetate

C32H44O14 (652.2731)


   

[(2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,11-tetrakis(acetyloxy)-2,8-dihydroxy-1,15-dimethyl-9-methylidene-14-oxo-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

[(2r,3s,4r,5r,6s,8s,10r,11r,12r,15s)-3,4,6,11-tetrakis(acetyloxy)-2,8-dihydroxy-1,15-dimethyl-9-methylidene-14-oxo-16-oxatetracyclo[10.5.0.0²,¹⁵.0⁵,¹⁰]heptadecan-5-yl]methyl benzoate

C35H42O14 (686.2574)


   

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9r,10s,12r,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9r,10s,12r,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

C47H51NO14 (853.3309)


   

(2r,3r,5s,7s,8s,9r,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (2e)-3-phenylprop-2-enoate

(2r,3r,5s,7s,8s,9r,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl (2e)-3-phenylprop-2-enoate

C39H48O12 (708.3146)


   

(1r,3r,8s)-2,5,10-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-14-yl 3-hydroxy-2-methylbutanoate

(1r,3r,8s)-2,5,10-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-14-yl 3-hydroxy-2-methylbutanoate

C31H46O9 (562.3142)


   

(1's,2s,2'r,3'r,5's,8'r,9'r,10'r,14's)-10'-(acetyloxy)-2',5',14'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-9'-yl acetate

(1's,2s,2'r,3'r,5's,8'r,9'r,10'r,14's)-10'-(acetyloxy)-2',5',14'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-9'-yl acetate

C24H36O8 (452.241)


   

(2r,3e,5r,7s,8e,10s,11r,13s)-2,3-bis(acetyloxy)-7,13-dihydroxy-10-[(1r)-1-hydroxyethoxy]-8-(hydroxymethyl)-4,14,15,15-tetramethylbicyclo[9.3.1]pentadeca-1(14),3,8-trien-5-yl acetate

(2r,3e,5r,7s,8e,10s,11r,13s)-2,3-bis(acetyloxy)-7,13-dihydroxy-10-[(1r)-1-hydroxyethoxy]-8-(hydroxymethyl)-4,14,15,15-tetramethylbicyclo[9.3.1]pentadeca-1(14),3,8-trien-5-yl acetate

C28H42O11 (554.2727)


   

2',5',9',10'-tetrakis(acetyloxy)-1',7'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5',9',10'-tetrakis(acetyloxy)-1',7'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C30H42O13 (610.2625)


   

2,4,8-tris(acetyloxy)-6,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

2,4,8-tris(acetyloxy)-6,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

C33H42O11 (614.2727)


   

(1r,2s,3e,5s,7s,8z,10r,13s)-5,7,9,10-tetrakis(acetyloxy)-2-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

(1r,2s,3e,5s,7s,8z,10r,13s)-5,7,9,10-tetrakis(acetyloxy)-2-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-13-yl acetate

C30H42O12 (594.2676)


   

[3,4,5-tris(acetyloxy)-6-{[1,3-bis(acetyloxy)-1-[4-(acetyloxy)phenyl]propan-2-yl]oxy}oxan-2-yl]methyl 4-(acetyloxy)benzoate

[3,4,5-tris(acetyloxy)-6-{[1,3-bis(acetyloxy)-1-[4-(acetyloxy)phenyl]propan-2-yl]oxy}oxan-2-yl]methyl 4-(acetyloxy)benzoate

C36H40O18 (760.2215)


   

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-8-(acetyloxy)-4,7,12,13-tetrahydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-10-yl acetate

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-8-(acetyloxy)-4,7,12,13-tetrahydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-10-yl acetate

C24H36O10 (484.2308)


   

2,8,11-tris(acetyloxy)-5,9-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-16-yl acetate

2,8,11-tris(acetyloxy)-5,9-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-16-yl acetate

C28H40O12 (568.252)


   

4-{8-hydroxy-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-6-yl}benzene-1,2-diol

4-{8-hydroxy-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-6-yl}benzene-1,2-diol

C22H26O6 (386.1729)


   

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9s,10s,12r,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9s,10s,12r,15s)-4,12-bis(acetyloxy)-2-(benzoyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]benzenecarboximidic acid

C47H51NO14 (853.3309)


   

(2r,4s,5s,7r,8e,10s,11r,13s)-10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

(2r,4s,5s,7r,8e,10s,11r,13s)-10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

C24H34O8 (450.2254)


   

[(1r,10r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,10r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C32H44O13 (636.2782)


   

(1r,2r,3r,4s,5s,7s,8s,9r,10r,13s)-7,9,10-tris(acetyloxy)-2,4,5-trihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-13-yl acetate

(1r,2r,3r,4s,5s,7s,8s,9r,10r,13s)-7,9,10-tris(acetyloxy)-2,4,5-trihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-13-yl acetate

C28H42O12 (570.2676)


   

[(1r,2r,3z,5s,7s,8e,10r,13s)-7,9,10,13-tetrakis(acetyloxy)-2,5-dihydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,2r,3z,5s,7s,8e,10r,13s)-7,9,10,13-tetrakis(acetyloxy)-2,5-dihydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C30H42O12 (594.2676)


   

(3ar,9ar)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

(3ar,9ar)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

C20H20O6 (356.126)


   

2',5',7',10'-tetrakis(acetyloxy)-1',9'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5',7',10'-tetrakis(acetyloxy)-1',9'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C30H42O13 (610.2625)


   

(8r,10r)-9,10,13-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl acetate

(8r,10r)-9,10,13-tris(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-5-yl acetate

C28H40O8 (504.2723)


   

9,10,13-tris(acetyloxy)-1,5-dihydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-7-yl benzoate

9,10,13-tris(acetyloxy)-1,5-dihydroxy-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-7-yl benzoate

C33H42O10 (598.2778)


   

10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

C24H34O8 (450.2254)


   

[2,7,9,10-tetrakis(acetyloxy)-5,13-dihydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[2,7,9,10-tetrakis(acetyloxy)-5,13-dihydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C30H42O12 (594.2676)


   

(1r,2r,3r,4r,5s,7s,8s,9r,10r,13s)-5,7,9,10-tetrakis(acetyloxy)-2-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-13-yl acetate

(1r,2r,3r,4r,5s,7s,8s,9r,10r,13s)-5,7,9,10-tetrakis(acetyloxy)-2-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyltricyclo[9.3.1.0³,⁸]pentadec-11-en-13-yl acetate

C30H44O12 (596.2833)


   

(9as)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

(9as)-6-hydroxy-4-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3h,3ah,4h,9h,9ah-naphtho[2,3-c]furan-1-one

C20H20O6 (356.126)


   

(5s)-1,7-dioxaspiro[4.4]non-2-ene-4,8-dione

(5s)-1,7-dioxaspiro[4.4]non-2-ene-4,8-dione

C7H6O4 (154.0266)


   

(2s,3as,4ar,6s,8ar,9r,10r)-9,10-bis(acetyloxy)-6-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-2-yl acetate

(2s,3as,4ar,6s,8ar,9r,10r)-9,10-bis(acetyloxy)-6-hydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-2-yl acetate

C26H38O8 (478.2567)


   

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',7',9',10'-pentakis(acetyloxy)-1'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',7',9',10'-pentakis(acetyloxy)-1'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C32H44O14 (652.2731)


   

2-[(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

2-[(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-4,12,13-trihydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

C33H42O12 (630.2676)


   

(5ar,6s,11ar)-6-(4-hydroxy-3-methoxyphenyl)-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-8-ol

(5ar,6s,11ar)-6-(4-hydroxy-3-methoxyphenyl)-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-8-ol

C23H28O6 (400.1886)


   

[(1r,2s,3e,5s,7e,10r,13s)-2,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

[(1r,2s,3e,5s,7e,10r,13s)-2,10,13-tris(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

C28H38O10 (534.2465)


   

5-isopropyl-3,4-dimethoxy-11,11-dimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6,13-tetraene-8,12,15-trione

5-isopropyl-3,4-dimethoxy-11,11-dimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadeca-2,4,6,13-tetraene-8,12,15-trione

C22H24O6 (384.1573)


   

(1s,2s,3r,5s,8r,9r,10r,14s)-2,5,9,10-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-14-yl 2-methylbutanoate

(1s,2s,3r,5s,8r,9r,10r,14s)-2,5,9,10-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-4-methylidenetricyclo[9.3.1.0³,⁸]pentadec-11-en-14-yl 2-methylbutanoate

C33H48O10 (604.3247)


   

(1'r,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',7',9',10',13'-pentakis(acetyloxy)-5'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-1'-yl acetate

(1'r,2r,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',7',9',10',13'-pentakis(acetyloxy)-5'-hydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-1'-yl acetate

C32H44O14 (652.2731)


   

(1e,3s,4r,6s,9r,11s)-3,9-bis(acetyloxy)-7,11,16,16-tetramethyl-10,14-dioxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7,12-trien-6-yl acetate

(1e,3s,4r,6s,9r,11s)-3,9-bis(acetyloxy)-7,11,16,16-tetramethyl-10,14-dioxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7,12-trien-6-yl acetate

C26H32O8 (472.2097)


   

3-hydroxy-4-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-3-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-2-one

3-hydroxy-4-[hydroxy(4-hydroxy-3-methoxyphenyl)methyl]-3-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-2-one

C20H22O8 (390.1315)


   

(1r,2s,3s,5s,8r,9r,10s,11s,13r,16s)-2,16-bis(acetyloxy)-5,8,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

(1r,2s,3s,5s,8r,9r,10s,11s,13r,16s)-2,16-bis(acetyloxy)-5,8,11-trihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

C31H40O11 (588.257)


   

[(1r,2s,3e,5s,7s,8e,10r,13s,15r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-15-(hydroxymethyl)-8,12,15-trimethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,2s,3e,5s,7s,8e,10r,13s,15r)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-15-(hydroxymethyl)-8,12,15-trimethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C32H44O14 (652.2731)


   

[(1r,2s,3e,5s,7e,10r,13s)-2,5,10,13-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

[(1r,2s,3e,5s,7e,10r,13s)-2,5,10,13-tetrakis(acetyloxy)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-4-yl]methyl acetate

C30H40O11 (576.257)


   

5-ethenyl-2,8,9-trihydroxy-5,11,11-trimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadec-6-en-15-one

5-ethenyl-2,8,9-trihydroxy-5,11,11-trimethyl-16-oxatetracyclo[7.5.2.0¹,¹⁰.0²,⁷]hexadec-6-en-15-one

C20H28O5 (348.1937)


   

2,3,4,5,6-pentahydroxycyclohexyl 3-(4-hydroxyphenyl)prop-2-enoate

2,3,4,5,6-pentahydroxycyclohexyl 3-(4-hydroxyphenyl)prop-2-enoate

C15H18O8 (326.1002)


   

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9s,10s,12r,15s)-4-(acetyloxy)-2-(benzoyloxy)-1,9,12-trihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]hexanimidic acid

n-[(1s,2r)-3-{[(1s,2s,3r,4s,7r,9s,10s,12r,15s)-4-(acetyloxy)-2-(benzoyloxy)-1,9,12-trihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-15-yl]oxy}-2-hydroxy-3-oxo-1-phenylpropyl]hexanimidic acid

C44H55NO13 (805.3673)


   

2,11,16-tris(acetyloxy)-5,8-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

2,11,16-tris(acetyloxy)-5,8-dihydroxy-3-(2-hydroxypropan-2-yl)-6,10-dimethyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-9-yl benzoate

C33H42O12 (630.2676)


   

4-[(2s,3r)-3-(hydroxymethyl)-5-(3-hydroxypropyl)-7-methoxy-2,3-dihydro-1-benzofuran-2-yl]benzene-1,2-diol

4-[(2s,3r)-3-(hydroxymethyl)-5-(3-hydroxypropyl)-7-methoxy-2,3-dihydro-1-benzofuran-2-yl]benzene-1,2-diol

C19H22O6 (346.1416)


   

(1s,2s,3r,4s,9s,10s,12r,15s)-4,12-bis(acetyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-15-{[(2e)-3-phenylprop-2-enoyl]oxy}-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

(1s,2s,3r,4s,9s,10s,12r,15s)-4,12-bis(acetyloxy)-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-15-{[(2e)-3-phenylprop-2-enoyl]oxy}-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

C40H44O12 (716.2833)


   

2',5',10'-tris(acetyloxy)-1',7',9'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5',10'-tris(acetyloxy)-1',7',9'-trihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C28H40O12 (568.252)


   

2,10-bis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

2,10-bis(acetyloxy)-5-hydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

C26H36O9 (492.2359)


   

10-(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

10-(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

C24H34O8 (450.2254)


   

(2r,4s,5s,7s,8z,10s,11r,13s)-10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

(2r,4s,5s,7s,8z,10s,11r,13s)-10-(acetyloxy)-2,7,13-trihydroxy-4,14,15,15-tetramethyl-3-oxotricyclo[9.3.1.1⁴,⁸]hexadeca-1(14),8-dien-5-yl acetate

C24H34O8 (450.2254)


   

8,10-bis(acetyloxy)-7,12,13-trihydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

8,10-bis(acetyloxy)-7,12,13-trihydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

C26H38O11 (526.2414)


   

(2r,3r)-2-{[(2s,3r)-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-7-methoxy-2,3-dihydro-1-benzofuran-5-yl]methyl}-3-[(4-hydroxy-3-methoxyphenyl)methyl]butane-1,4-diol

(2r,3r)-2-{[(2s,3r)-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-7-methoxy-2,3-dihydro-1-benzofuran-5-yl]methyl}-3-[(4-hydroxy-3-methoxyphenyl)methyl]butane-1,4-diol

C30H36O9 (540.2359)


   

2-[(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-4,7,8,10,13-pentakis(acetyloxy)-12-hydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

2-[(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-4,7,8,10,13-pentakis(acetyloxy)-12-hydroxy-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-2-yl]propan-2-yl benzoate

C37H46O14 (714.2887)


   

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-4,6,8,9-tetrakis(acetyloxy)-2,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[(2s,3as,4s,4ar,5r,6s,8s,8as,9r,10r)-4,6,8,9-tetrakis(acetyloxy)-2,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C30H44O13 (612.2782)


   

(4as,10ar)-5-hydroxy-7-isopropyl-6-methoxy-1,1,4a-trimethyl-3,4,10,10a-tetrahydrophenanthrene-2,9-dione

(4as,10ar)-5-hydroxy-7-isopropyl-6-methoxy-1,1,4a-trimethyl-3,4,10,10a-tetrahydrophenanthrene-2,9-dione

C21H28O4 (344.1987)


   

4-{[(5r,6r)-6-[(4-hydroxy-3-methoxyphenyl)methyl]-2,2-dimethyl-1,3-dioxepan-5-yl]methyl}-2-methoxyphenol

4-{[(5r,6r)-6-[(4-hydroxy-3-methoxyphenyl)methyl]-2,2-dimethyl-1,3-dioxepan-5-yl]methyl}-2-methoxyphenol

C23H30O6 (402.2042)


   

[2-(3,4-dihydroxyphenyl)-4-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-3-yl]methyl acetate

[2-(3,4-dihydroxyphenyl)-4-[(4-hydroxy-3-methoxyphenyl)methyl]oxolan-3-yl]methyl acetate

C21H24O7 (388.1522)


   

(1r,5as,9as,9br)-6,6,9a-trimethyl-1h,3h,5h,5ah,7h,8h,9h,9bh-naphtho[1,2-c]furan-1-ol

(1r,5as,9as,9br)-6,6,9a-trimethyl-1h,3h,5h,5ah,7h,8h,9h,9bh-naphtho[1,2-c]furan-1-ol

C15H24O2 (236.1776)


   

(1r,2s,3e,5s,7s,8e,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl (2r,3s)-3-(dimethylamino)-2-hydroxy-3-phenylpropanoate

(1r,2s,3e,5s,7s,8e,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl (2r,3s)-3-(dimethylamino)-2-hydroxy-3-phenylpropanoate

C43H57NO15 (827.3728)


   

[6,8,9-tris(acetyloxy)-2,4,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[6,8,9-tris(acetyloxy)-2,4,10-trihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C28H42O12 (570.2676)


   

[(1r,2s,3e,5s,7s,8z,10r,13s)-2,5,7,9,10,13-hexakis(acetyloxy)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,2s,3e,5s,7s,8z,10r,13s)-2,5,7,9,10,13-hexakis(acetyloxy)-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C34H46O14 (678.2887)


   

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-12,13-dihydroxy-5,9-dimethyl-2-(prop-1-en-2-yl)-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

(1s,2s,4s,7r,8r,9s,10s,12s,13s,16r)-7,8,10-tris(acetyloxy)-12,13-dihydroxy-5,9-dimethyl-2-(prop-1-en-2-yl)-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-4-yl acetate

C28H38O11 (550.2414)


   

4-[(5ar,6s,11ar)-8-hydroxy-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-6-yl]benzene-1,2-diol

4-[(5ar,6s,11ar)-8-hydroxy-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-6-yl]benzene-1,2-diol

C22H26O6 (386.1729)


   

2,6-dihydroxy-7-isopropyl-1,1,4a-trimethyl-3,4,10,10a-tetrahydro-2h-phenanthren-9-one

2,6-dihydroxy-7-isopropyl-1,1,4a-trimethyl-3,4,10,10a-tetrahydro-2h-phenanthren-9-one

C20H28O3 (316.2038)


   

(1r,2s,3s,5s,8r,9r,10r,11s,13r,16s)-16-(acetyloxy)-10-[(acetyloxy)methyl]-5,8,9,11-tetrahydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

(1r,2s,3s,5s,8r,9r,10r,11s,13r,16s)-16-(acetyloxy)-10-[(acetyloxy)methyl]-5,8,9,11-tetrahydroxy-3-(2-hydroxypropan-2-yl)-6-methyl-14-oxatetracyclo[8.6.0.0³,⁷.0¹³,¹⁶]hexadec-6-en-2-yl benzoate

C31H40O12 (604.252)


   

4-[4-(4-hydroxy-3-methoxybenzoyl)-3-(hydroxymethyl)oxolan-2-yl]-2-methoxyphenol

4-[4-(4-hydroxy-3-methoxybenzoyl)-3-(hydroxymethyl)oxolan-2-yl]-2-methoxyphenol

C20H22O7 (374.1365)


   

2',5',7',9'-tetrakis(acetyloxy)-1',10'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

2',5',7',9'-tetrakis(acetyloxy)-1',10'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C30H42O13 (610.2625)


   

(1r,8r,10r)-9,10-bis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

(1r,8r,10r)-9,10-bis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethyl-4-methylidene-13-oxotricyclo[9.3.1.0³,⁸]pentadec-11-en-2-yl acetate

C26H36O8 (476.241)


   

3-(acetyloxy)-9-hydroxy-7,11,16,16-tetramethyl-10,14-dioxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7,12-trien-6-yl acetate

3-(acetyloxy)-9-hydroxy-7,11,16,16-tetramethyl-10,14-dioxotricyclo[9.3.1.1⁴,⁸]hexadeca-1,7,12-trien-6-yl acetate

C24H30O7 (430.1991)


   

(1r,2s,3e,5s,7e,10r,13s)-10-(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

(1r,2s,3e,5s,7e,10r,13s)-10-(acetyloxy)-2,5-dihydroxy-4-(hydroxymethyl)-8,12,15,15-tetramethyl-9-oxobicyclo[9.3.1]pentadeca-3,7,11-trien-13-yl acetate

C24H34O8 (450.2254)


   

(1r,2r,3r,4s,7r,9s,10s,11r,12r,15s)-4,9,11,12,15-pentakis(acetyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

(1r,2r,3r,4s,7r,9s,10s,11r,12r,15s)-4,9,11,12,15-pentakis(acetyloxy)-10,14,17,17-tetramethyl-6-oxatetracyclo[11.3.1.0³,¹⁰.0⁴,⁷]heptadec-13-en-2-yl benzoate

C37H46O13 (698.2938)


   

6-(4-hydroxy-3-methoxyphenyl)-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-8-ol

6-(4-hydroxy-3-methoxyphenyl)-9-methoxy-3,3-dimethyl-1h,5h,5ah,6h,11h,11ah-naphtho[2,3-e][1,3]dioxepin-8-ol

C23H28O6 (400.1886)


   

(3s)-8-hydroxy-3-methyl-1-oxo-3,4-dihydro-2-benzopyran-5-carboxylic acid

(3s)-8-hydroxy-3-methyl-1-oxo-3,4-dihydro-2-benzopyran-5-carboxylic acid

C11H10O5 (222.0528)


   

[(1r,2s,3e,5s,7s,8e,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

[(1r,2s,3e,5s,7s,8e,10r,13s)-2,7,9,10,13-pentakis(acetyloxy)-5-hydroxy-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-4-yl]methyl acetate

C32H44O13 (636.2782)


   

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',7',9'-tetrakis(acetyloxy)-1',10'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

(1's,2s,2's,3'r,5's,7's,8's,9'r,10'r,13's)-2',5',7',9'-tetrakis(acetyloxy)-1',10'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-13'-yl acetate

C30H42O13 (610.2625)


   

(4r)-4-[(3r)-3-hydroxybutyl]-3,5,5-trimethylcyclohex-2-en-1-one

(4r)-4-[(3r)-3-hydroxybutyl]-3,5,5-trimethylcyclohex-2-en-1-one

C13H22O2 (210.162)


   

(2s,3as,4s,4ar,6s,8s,8as,9r,10r)-2,4,8-tris(acetyloxy)-6,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

(2s,3as,4s,4ar,6s,8s,8as,9r,10r)-2,4,8-tris(acetyloxy)-6,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-5-methylidene-2h,3h,4h,4ah,6h,7h,8h,9h,10h-cyclohexa[f]azulen-9-yl benzoate

C33H42O11 (614.2727)


   

4-[3-(ethoxymethyl)-5-(4-hydroxy-3-methoxyphenyl)-4-(hydroxymethyl)oxolan-2-yl]-2-methoxyphenol

4-[3-(ethoxymethyl)-5-(4-hydroxy-3-methoxyphenyl)-4-(hydroxymethyl)oxolan-2-yl]-2-methoxyphenol

C22H28O7 (404.1835)


   

(1s)-2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl 3-phenylprop-2-enoate

(1s)-2,7,9,10,13-pentakis(acetyloxy)-4-[(acetyloxy)methyl]-8,12,15,15-tetramethylbicyclo[9.3.1]pentadeca-3,8,11-trien-5-yl 3-phenylprop-2-enoate

C41H50O14 (766.32)


   

[2,6,8,9-tetrakis(acetyloxy)-4,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

[2,6,8,9-tetrakis(acetyloxy)-4,10-dihydroxy-3a-(2-hydroxypropan-2-yl)-1,8a-dimethyl-2h,3h,4h,4ah,5h,6h,7h,8h,9h,10h-cyclohexa[f]azulen-5-yl]methyl acetate

C30H44O13 (612.2782)


   

2-{[1-(5-ethyl-6-methylheptan-2-yl)-9a,11a-dimethyl-1h,2h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-7-yl]oxy}-6-(hydroxymethyl)oxane-3,4,5-triol

2-{[1-(5-ethyl-6-methylheptan-2-yl)-9a,11a-dimethyl-1h,2h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-7-yl]oxy}-6-(hydroxymethyl)oxane-3,4,5-triol

C35H60O6 (576.439)


   

4-[(1s,3ar,4r,6ar)-4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]benzene-1,2-diol

4-[(1s,3ar,4r,6ar)-4-(4-hydroxy-3-methoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]benzene-1,2-diol

C19H20O6 (344.126)


   

8-(acetyloxy)-4,7,12,13-tetrahydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-10-yl acetate

8-(acetyloxy)-4,7,12,13-tetrahydroxy-2-(2-hydroxypropan-2-yl)-5,9-dimethyl-15-oxatetracyclo[7.6.1.0²,⁶.0¹³,¹⁶]hexadec-5-en-10-yl acetate

C24H36O10 (484.2308)


   

5',7',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-2'-yl acetate

5',7',9',10'-tetrakis(acetyloxy)-1',13'-dihydroxy-8',12',15',15'-tetramethylspiro[oxirane-2,4'-tricyclo[9.3.1.0³,⁸]pentadecan]-11'-en-2'-yl acetate

C30H42O13 (610.2625)