NCBI Taxonomy: 940967

Talipariti (ncbi_taxid: 940967)

found 370 associated metabolites at genus taxonomy rank level.

Ancestor: Malvoideae

Child Taxonomies: Talipariti hamabo, Talipariti elatum, Talipariti glabrum, Talipariti hastatum, Talipariti tiliaceum, Talipariti macrophyllum

Scopoletin

7-hydroxy-6-methoxy-2H-chromen-2-one

C10H8O4 (192.0422568)


Scopoletin is a hydroxycoumarin that is umbelliferone bearing a methoxy substituent at position 6. It has a role as a plant growth regulator and a plant metabolite. It is functionally related to an umbelliferone. Scopoletin is a natural product found in Ficus auriculata, Haplophyllum cappadocicum, and other organisms with data available. Scopoletin is a coumarin compound found in several plants including those in the genus Scopolia and the genus Brunfelsia, as well as chicory (Cichorium), redstem wormwood (Artemisia scoparia), stinging nettle (Urtica dioica), passion flower (Passiflora), noni (Morinda citrifolia fruit) and European black nightshade (Solanum nigrum) that is comprised of umbelliferone with a methoxy group substituent at position 6. Scopoletin is used to standardize and establish pharmacokinetic properties for products derived from the plants that produce it, such as noni extract. Although the mechanism(s) of action have not yet been established, this agent has potential antineoplastic, antidopaminergic, antioxidant, anti-inflammatory and anticholinesterase effects. Plant growth factor derived from the root of Scopolia carniolica or Scopolia japonica. See also: Arnica montana Flower (part of); Lycium barbarum fruit (part of); Viburnum opulus root (part of). Isolated from Angelica acutiloba (Dong Dang Gui). Scopoletin is found in many foods, some of which are lambsquarters, lemon, sunflower, and sherry. Scopoletin is found in anise. Scopoletin is isolated from Angelica acutiloba (Dong Dang Gui A hydroxycoumarin that is umbelliferone bearing a methoxy substituent at position 6. Acquisition and generation of the data is financially supported in part by CREST/JST. [Raw Data] CBA72_Scopoletin_pos_20eV.txt [Raw Data] CBA72_Scopoletin_pos_40eV.txt [Raw Data] CBA72_Scopoletin_neg_30eV.txt [Raw Data] CBA72_Scopoletin_neg_50eV.txt [Raw Data] CBA72_Scopoletin_pos_50eV.txt [Raw Data] CBA72_Scopoletin_pos_10eV.txt [Raw Data] CBA72_Scopoletin_neg_40eV.txt [Raw Data] CBA72_Scopoletin_neg_10eV.txt [Raw Data] CBA72_Scopoletin_pos_30eV.txt [Raw Data] CBA72_Scopoletin_neg_20eV.txt Scopoletin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=92-61-5 (retrieved 2024-07-12) (CAS RN: 92-61-5). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Vanillic acid

4-hydroxy-3-methoxybenzoic acid

C8H8O4 (168.0422568)


Vanillic acid is a phenolic acid found in some forms of vanilla and many other plant extracts. It is a flavouring and scent agent that produces a pleasant, creamy odour. It is the intermediate product in the two-step bioconversion of ferulic acid to vanillin (J Biotechnol 1996;50(2-3):107-13). Vanillic acid, which is a chlorogenic acid, is an oxidized form of vanillin. It is also an intermediate in the production of vanillin from ferulic acid. Vanillic acid is a metabolic byproduct of caffeic acid and is often found in the urine of humans who have consumed coffee, chocolate, tea, and vanilla-flavoured confectionary. Vanillic acid selectively and specifically inhibits 5nucleotidase activity (PMID: 16899266). Vanillic acid is a microbial metabolite found in Amycolatopsis, Delftia, and Pseudomonas (PMID: 11152072, 10543794, 11728709, 9579070). Vanillic acid is a phenolic acid found in some forms of vanilla and many other plant extracts. It is a flavoring and scent agent that produces a pleasant, creamy odor. It is the intermediate product in the two-step bioconversion of ferulic acid to vanillin. (J Biotechnol 1996;50(2-3):107-13). Vanillic acid, which is a chlorogenic acid, is an oxidized form of vanillin. It is also an intermediate in the production of vanillin from ferulic acid. Vanillic acid is a metabolic byproduct of caffeic acid and is often found in the urine of humans who have consumed coffee, chocolate, tea and vanilla-flavored confectionary. Vanillic acid selectively and specifically inhibits 5nucleotidase activity. (PMID: 16899266). Vanillic acid is a monohydroxybenzoic acid that is 4-hydroxybenzoic acid substituted by a methoxy group at position 3. It has a role as a plant metabolite. It is a monohydroxybenzoic acid and a methoxybenzoic acid. It is a conjugate acid of a vanillate. Vanillic acid is a natural product found in Ficus septica, Haplophyllum cappadocicum, and other organisms with data available. Vanillic acid is a metabolite found in or produced by Saccharomyces cerevisiae. A flavoring agent. It is the intermediate product in the two-step bioconversion of ferulic acid to vanillin. (J Biotechnol 1996;50(2-3):107-13). A monohydroxybenzoic acid that is 4-hydroxybenzoic acid substituted by a methoxy group at position 3. Vanillic acid. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=121-34-6 (retrieved 2024-06-29) (CAS RN: 121-34-6). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1]. Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1].

   

Scoparone

6,7-dimethoxychromen-2-one

C11H10O4 (206.057906)


Scoparone is a member of the class of coumarins that is esculetin in which the two hydroxy groups at positions 6 and 7 are replaced by methoxy groups. It is a major constituent of the Chinese herbal medicine Yin Chen Hao, and exhibits a variety of pharmacological activities such as anti-inflammatory, anti-allergic, and anti-tumor activities. It has a role as a plant metabolite, an anti-inflammatory agent, an antilipemic drug, an immunosuppressive agent, an antihypertensive agent and an anti-allergic agent. It is a member of coumarins and an aromatic ether. It is functionally related to an esculetin. Scoparone is a natural product found in Haplophyllum ramosissimum, Haplophyllum thesioides, and other organisms with data available. A member of the class of coumarins that is esculetin in which the two hydroxy groups at positions 6 and 7 are replaced by methoxy groups. It is a major constituent of the Chinese herbal medicine Yin Chen Hao, and exhibits a variety of pharmacological activities such as anti-inflammatory, anti-allergic, and anti-tumor activities. D005765 - Gastrointestinal Agents > D002756 - Cholagogues and Choleretics Scoparone is found in anise. Scoparone is found in several citrus oil D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D002317 - Cardiovascular Agents > D014665 - Vasodilator Agents Found in several citrus oils Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1]. Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1].

   

(-)-Gossypol

ethanoic acid;7-[8-methanoyl-3-methyl-1,6,7-tris(oxidanyl)-5-propan-2-yl-naphthalen-2-yl]-6-methyl-2,3,8-tris(oxidanyl)-4-propan-2-yl-naphthalene-1-carbaldehyde

C30H30O8 (518.194058)


Gossypol has been used in trials studying the treatment of Non-small Cell Lung Cancer. (-)-Gossypol or (R)-Gossypol, is the R-isomer of [Gossypol]. Gossypol is a natural product found in Malva pseudolavatera, Hibiscus syriacus, and other organisms with data available. Gossypol is an orally-active polyphenolic aldehyde with potential antineoplastic activity. Derived primarily from unrefined cottonseed oil, gossypol induces cell cycle arrest at the G0/G1 phase, thereby inhibiting DNA replication and inducing apoptosis. This agent also inhibits cell-signaling enzymes, resulting in inhibition of cell growth, and may act as a male contraceptive. (-)-Gossypol is found in fats and oils. (-)-Gossypol is a constituent of Gossypium hirsutum (cotton).(-)-gossypol has been shown to exhibit anti-tumor, anti-cancer and anti-proliferative functions (A7832, A7833, A7834). A dimeric sesquiterpene found in cottonseed (GOSSYPIUM). The (-) isomer is active as a male contraceptive (CONTRACEPTIVE AGENTS, MALE) whereas toxic symptoms are associated with the (+) isomer. Gossypol, also known as gossypol, (+)-isomer or (-)-gossypol, is a member of the class of compounds known as sesquiterpenoids. Sesquiterpenoids are terpenes with three consecutive isoprene units. Thus, gossypol is considered to be an isoprenoid lipid molecule. Gossypol is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Gossypol can be found in cottonseed, okra, soy bean, and sunflower, which makes gossypol a potential biomarker for the consumption of these food products. Gossypol is a non-carcinogenic (not listed by IARC) potentially toxic compound. Among other things, it has been tested as a male oral contraceptive in China. In addition to its putative contraceptive properties, gossypol has also long been known to possess antimalarial properties. Other researchers are investigating the anticancer properties of gossypol . Gossypol may cause apoptosis via the regulation of Bax and Bcl-2 proteins. It is also an inhibitor of calcineurin and protein kinases C, and has been shown to bind calmodulin (L1239) (T3DB). C471 - Enzyme Inhibitor > C1404 - Protein Kinase Inhibitor > C61074 - Serine/Threonine Kinase Inhibitor (-)-Gossypol is found in fats and oils. (-)-Gossypol is a constituent of Gossypium hirsutum (cotton) D012102 - Reproductive Control Agents > D003270 - Contraceptive Agents C274 - Antineoplastic Agent > C1931 - Antineoplastic Plant Product C1907 - Drug, Natural Product Gossypol binds to Bcl-xL protein and Bcl-2 protein with Kis of 0.5-0.6 μM and 0.2-0.3 mM, respectively. Gossypol binds to Bcl-xL protein and Bcl-2 protein with Kis of 0.5-0.6 μM and 0.2-0.3 mM, respectively.

   

4-Hydroxybenzaldehyde

4-hydroxybenzaldehyde

C7H6O2 (122.0367776)


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.

   

4-Hydroxybenzoic acid

4-hydroxybenzoic acid

C7H6O3 (138.03169259999999)


4-Hydroxybenzoic acid, also known as p-hydroxybenzoate or 4-carboxyphenol, 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. 4-Hydroxybenzoic acid is a white crystalline solid that is slightly soluble in water and chloroform but more soluble in polar organic solvents such as alcohols and acetone. It is a nutty and phenolic tasting compound. 4-Hydroxybenzoic acid exists in all living species, ranging from bacteria to plants to humans. 4-Hydroxybenzoic acid can be found naturally in coconut. It is one of the main catechins metabolites found in humans after consumption of green tea infusions. It is also found in wine, in vanilla, in A√ßa√≠ oil, obtained from the fruit of the a√ßa√≠ palm (Euterpe oleracea), at relatively high concetrations (892¬±52 mg/kg). It is also found in cloudy olive oil and in the edible mushroom Russula virescens. It has been detected in red huckleberries, rabbiteye blueberries, and corianders and in a lower concentration in olives, red raspberries, and almonds. In humans, 4-hydroxybenzoic acid is involved in ubiquinone biosynthesis. In particular, the enzyme 4-hydroxybenzoate polyprenyltransferase uses a polyprenyl diphosphate and 4-hydroxybenzoate to produce diphosphate and 4-hydroxy-3-polyprenylbenzoate. This enzyme participates in ubiquinone biosynthesis. 4-Hydroxybenzoic acid can be biosynthesized by the enzyme Chorismate lyase. Chorismate lyase is an enzyme that transforms chorismate into 4-hydroxybenzoate and pyruvate. This enzyme catalyses the first step in ubiquinone biosynthesis in Escherichia coli and other Gram-negative bacteria. 4-Hydroxybenzoate is an intermediate in many enzyme-mediated reactions in microbes. For instance, the enzyme 4-hydroxybenzaldehyde dehydrogenase uses 4-hydroxybenzaldehyde, NAD+ and H2O to produce 4-hydroxybenzoate, NADH and H+. This enzyme participates in toluene and xylene degradation in bacteria such as Pseudomonas mendocina. 4-hydroxybenzaldehyde dehydrogenase is also found in carrots. The enzyme 4-hydroxybenzoate 1-hydroxylase transforms 4-hydroxybenzoate, NAD(P)H, 2 H+ and O2 into hydroquinone, NAD(P)+, H2O and CO2. This enzyme participates in 2,4-dichlorobenzoate degradation and is found in Candida parapsilosis. The enzyme 4-hydroxybenzoate 3-monooxygenase transforms 4-hydroxybenzoate, NADPH, H+ and O2 into protocatechuate, NADP+ and H2O. This enzyme participates in benzoate degradation via hydroxylation and 2,4-dichlorobenzoate degradation and is found in Pseudomonas putida and Pseudomonas fluorescens. 4-Hydroxybenzoic acid is a popular antioxidant in part because of its low toxicity. 4-Hydroxybenzoic acid has estrogenic activity both in vitro and in vivo (PMID 9417843). Isolated from many plants, free and combined. Alkyl esters of 4-hydroxybenzoic acid (see below) are used as food and cosmetic preservatives, mainly in their Na salt form, which makes them more water soluble. They are active at low concentrations and more pH-independent than the commonly used Benzoic acid DVN38-Z and 2,4-Hexadienoic acid GMZ10-P. The taste is more detectable than for those preservatives. Effectiveness increases with chain length of the alcohol, but for some microorganisms this reduces cell permeability and thus counteracts the increased efficiency. 4-Hydroxybenzoic acid is found in many foods, some of which are chicory, corn, rye, and black huckleberry. 4-hydroxybenzoic acid is a monohydroxybenzoic acid that is benzoic acid carrying a hydroxy substituent at C-4 of the benzene ring. It has a role as a plant metabolite and an algal metabolite. It is a conjugate acid of a 4-hydroxybenzoate. 4-Hydroxybenzoic acid is a metabolite found in or produced by Escherichia coli (strain K12, MG1655). See also: Vaccinium myrtillus Leaf (part of); Galium aparine whole (part of); Menyanthes trifoliata leaf (part of) ... View More ... A monohydroxybenzoic acid that is benzoic acid carrying a hydroxy substituent at C-4 of the benzene ring. 4-Hydroxybenzoic acid. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=99-96-7 (retrieved 2024-07-01) (CAS RN: 99-96-7). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). 4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL. 4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL.

   

Moupinamide

(Z,2E)-3-(4-hydroxy-3-methoxyphenyl)-N-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

C18H19NO4 (313.1314014)


N-feruloyltyramine is a member of tyramines. It has a role as a metabolite. Moupinamide is a natural product found in Zanthoxylum beecheyanum, Polyalthia suberosa, and other organisms with data available. See also: Tobacco Leaf (part of); Cannabis sativa subsp. indica top (part of); Ipomoea aquatica leaf (part of). Alkaloid from Piper nigrum. Moupinamide is found in many foods, some of which are nutmeg, amaranth, sapodilla, and orange bell pepper. Moupinamide is found in eggplant. Moupinamide is an alkaloid from Piper nigru CASMI2013 Challenge_1 MS2 data; [MS1] MSJ00001 CASMI2013 Challenge_1 MS1 data; [MS2] MSJ00002 N-trans-Feruloyltyramine (N-feruloyltyramine), an alkaloid from Piper nigru, is an inhibitor of COX1 and COX2, with potential antioxidant properties. N-trans-Feruloyltyramine possesses anti-inflammatory activity[1]. N-trans-Feruloyltyramine (N-feruloyltyramine), an alkaloid from Piper nigru, is an inhibitor of COX1 and COX2, with potential antioxidant properties. N-trans-Feruloyltyramine possesses anti-inflammatory activity[1].

   

Friedelin

3(2H)-PICENONE, EICOSAHYDRO-4,4A,6B,8A,11,11,12B,14A-OCTAMETHYL-, (4R-(4.ALPHA.,4A.ALPHA.,6A.BETA.,6B.ALPHA.,8A.ALPHA.,12A.ALPHA.,12B.BETA.,14A.ALPHA.,14B.BETA.))-

C30H50O (426.386145)


Friedelin is a pentacyclic triterpenoid that is perhydropicene which is substituted by an oxo group at position 3 and by methyl groups at the 4, 4a, 6b, 8a, 11, 11, 12b, and 14a-positions (the 4R,4aS,6aS,6bR,8aR,12aR,12bS,14aS,14bS-enantiomer). It is the major triterpenoid constituent of cork. It has a role as an anti-inflammatory drug, a non-narcotic analgesic, an antipyretic and a plant metabolite. It is a pentacyclic triterpenoid and a cyclic terpene ketone. Friedelin is a natural product found in Diospyros eriantha, Salacia chinensis, and other organisms with data available. A pentacyclic triterpenoid that is perhydropicene which is substituted by an oxo group at position 3 and by methyl groups at the 4, 4a, 6b, 8a, 11, 11, 12b, and 14a-positions (the 4R,4aS,6aS,6bR,8aR,12aR,12bS,14aS,14bS-enantiomer). It is the major triterpenoid constituent of cork. Friedelin is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Friedelin is practically insoluble (in water) and an extremely weak basic (essentially neutral) compound (based on its pKa). Friedelin can be found in a number of food items such as pomegranate, sugar apple, apple, and mammee apple, which makes friedelin a potential biomarker for the consumption of these food products. Friedelin is a triterpenoid chemical compound found in Azima tetracantha, Orostachys japonica, and Quercus stenophylla. Friedelin is also found in the roots of the Cannabis plant .

   

Betulin

(1R,3aS,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-3a-(hydroxymethyl)-5a,5b,8,8,11a-pentamethyl-1-prop-1-en-2-yl-1,2,3,4,5,6,7,7a,9,10,11,11b,12,13,13a,13b-hexadecahydrocyclopenta[a]chrysen-9-ol

C30H50O2 (442.38106)


Betulin is found in black elderberry. Betulin is a constituent of Corylus avellana (filbert) and Vicia faba. Betulin (lup-20(29)-ene-3 ,28-diol) is an abundant naturally occurring triterpene. It is commonly isolated from the bark of birch trees and forms up to 30\\\\\% of the dry weight of the extractive. The purpose of the compound in the bark is not known. It can be converted to betulinic acid (the alcohol group replaced by a carboxylic acid group), which is biologically more active than betulin itself. Chemically, betulin is a triterpenoid of lupane structure. It has a pentacyclic ring structure, and hydroxyl groups in positions C3 and C28 Betulin is a pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-hydroxymethyl substituents. It has a role as a metabolite, an antiviral agent, an analgesic, an anti-inflammatory agent and an antineoplastic agent. It is a pentacyclic triterpenoid and a diol. It derives from a hydride of a lupane. Betulin is a natural product found in Diospyros morrisiana, Euonymus carnosus, and other organisms with data available. A pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-hydroxymethyl substituents. Constituent of Corylus avellana (filbert) and Vicia faba Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line. Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line. Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line.

   

Oleanolic acid

(4aS,5S,6aS,6bR,8R,8aR,10S,12aR,12bR,14bS)-10-Hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-octadecahydro-2H-picene-4a-carboxylic acid

C30H48O3 (456.36032579999994)


Oleanolic acid is a pentacyclic triterpene, found in the non-glyceride fraction of olive pomace oil (Olive pomace oil, also known as "orujo" olive oil, is a blend of refined-pomace oil and virgin olive oil, fit for human consumption). Pentacyclic triterpenes are natural compounds which are widely distributed in plants. These natural products have been demonstrated to possess anti-inflammatory properties. Triterpenoids have been reported to possess antioxidant properties, since they prevent lipid peroxidation and suppress superoxide anion generation. The triterpenes have a history of medicinal use in many Asian countries. Oleanolic acid exhibits both pro- and anti-inflammatory properties depending on chemical structure and dose and may be useful in modulating the immune response; further studies are required to confirm the immunomodulatory behaviour of this triterpenoid, and characterise the mechanisms underlying the biphasic nature of some aspects of the inflammatory response. Oleanolic acid is a ubiquitous triterpenoid in plant kingdom, medicinal herbs, and is an integral part of the human diet. During the last decade over 700 research articles have been published on triterpenoids research, reflecting tremendous interest and progress in our understanding of these compounds. This included the isolation and purification of these tritepernoids from various plants and herbs, the chemical modifications to make more effective and water soluble derivatives, the pharmacological research on their beneficial effects, the toxicity studies, and the clinical use of these triterpenoids in various diseases including anticancer chemotherapies. (PMID:17292619, 15522132, 15994040). Oleanolic acid is a pentacyclic triterpenoid that is olean-12-en-28-oic acid substituted by a beta-hydroxy group at position 3. It has a role as a plant metabolite. It is a pentacyclic triterpenoid and a hydroxy monocarboxylic acid. It is a conjugate acid of an oleanolate. It derives from a hydride of an oleanane. Oleanolic acid is a natural product found in Ophiopogon japonicus, Freziera, and other organisms with data available. A pentacyclic triterpene that occurs widely in many PLANTS as the free acid or the aglycone for many SAPONINS. It is biosynthesized from lupane. It can rearrange to the isomer, ursolic acid, or be oxidized to taraxasterol and amyrin. See also: Holy basil leaf (part of); Jujube fruit (part of); Paeonia lactiflora root (part of) ... View More ... Occurs as glycosides in cloves (Syzygium aromaticum), sugar beet (Beta vulgaris), olive leaves, etc. Very widely distributed aglycone A pentacyclic triterpenoid that is olean-12-en-28-oic acid substituted by a beta-hydroxy group at position 3. [Raw Data] CBA90_Oleanolic-acid_neg_50eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_20eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_10eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_30eV.txt [Raw Data] CBA90_Oleanolic-acid_neg_40eV.txt Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities. Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities.

   

Sinapaldehyde

2-Propenal, 3-(4-hydroxy-3,5-dimethoxyphenyl)-, (2E)-

C11H12O4 (208.0735552)


(E)-sinapaldehyde is a member of the class of cinnamaldehydes that is cinnamaldehyde substituted by a hydroxy group at position 4 and methoxy groups at positions 3 and 5. It has a role as an antifungal agent and a plant metabolite. It is a member of cinnamaldehydes, a dimethoxybenzene and a member of phenols. It is functionally related to an (E)-cinnamaldehyde. Sinapaldehyde is a natural product found in Stereospermum colais, Aralia bipinnata, 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 methoxy groups at positions 3 and 5. D018501 - Antirheumatic Agents > D000894 - Anti-Inflammatory Agents, Non-Steroidal > D016861 - Cyclooxygenase Inhibitors D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics D000893 - Anti-Inflammatory Agents D004791 - Enzyme Inhibitors Sinapaldehyde, also known as (E)-3-(4-hydroxy-3,5-dimethoxyphenyl)-2-propenal or (E)-sinapoyl aldehyde, 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. Sinapaldehyde is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Sinapaldehyde can be synthesized from cinnamaldehyde. Sinapaldehyde can also be synthesized into 4-acetoxy-3,5-dimethoxy-trans-cinnamaldehyde. Sinapaldehyde can be found in a number of food items such as angelica, saskatoon berry, rubus (blackberry, raspberry), and lemon verbena, which makes sinapaldehyde a potential biomarker for the consumption of these food products. In Arabidopsis thaliana, this compound is part of the lignin biosynthesis pathway. The enzyme dihydroflavonol 4-reductase uses sinapaldehyde and NADPH to produce sinapyl alcohol and NADP+ . Annotation level-2 Sinapaldehyde exhibits moderate antibacterial against Methicillin resistant S. aureus (MRSA) and E. coli with MIC values of 128 and 128 μg/mL[1]. Sinapaldehyde exhibits moderate antibacterial against Methicillin resistant S. aureus (MRSA) and E. coli with MIC values of 128 and 128 μg/mL[1].

   

Amyrin

(3S,4aR,5R,6aR,6bR,8S,8aR,12aR,14aR,14bR)-4,4,6a,6b,8a,11,11,14b-Octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-eicosahydro-picen-3-ol

C30H50O (426.386145)


Beta-amyrin is a pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. It has a role as a plant metabolite and an Aspergillus metabolite. It is a pentacyclic triterpenoid and a secondary alcohol. It derives from a hydride of an oleanane. beta-Amyrin is a natural product found in Ficus pertusa, Ficus septica, and other organisms with data available. See also: Calendula Officinalis Flower (part of); Viburnum opulus bark (part of); Centaurium erythraea whole (part of). A pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1]. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1].

   

Syringic acid

InChI=1/C9H10O5/c1-13-6-3-5(9(11)12)4-7(14-2)8(6)10/h3-4,10H,1-2H3,(H,11,12

C9H10O5 (198.052821)


Syringic acid, also known as syringate or cedar acid, belongs to the class of organic compounds known as gallic acid and derivatives. Gallic acid and derivatives are compounds containing a 3,4,5-trihydroxybenzoic acid moiety. Outside of the human body, Syringic acid is found, on average, in the highest concentration within a few different foods, such as common walnuts, swiss chards, and olives and in a lower concentration in apples, tarragons, and peanuts. Syringic acid has also been detected, but not quantified in several different foods, such as sweet marjorams, silver lindens, bulgurs, annual wild rices, and barley. This could make syringic acid a potential biomarker for the consumption of these foods. Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation. Research suggests that phenolics from wine may play a positive role against oxidation of low-density lipoprotein (LDL), which is a key step in the development of atherosclerosis. Syringic acid is a phenol present in some distilled alcohol beverages. It is also a product of microbial (gut) metabolism of anthocyanins and other polyphenols that have been consumed (in fruits and alcoholic beverages - PMID:18767860). Syringic acid is also a microbial metabolite that can be found in Bifidobacterium (PMID:24958563). Syringic acid is a dimethoxybenzene that is 3,5-dimethyl ether derivative of gallic acid. It has a role as a plant metabolite. It is a member of benzoic acids, a dimethoxybenzene and a member of phenols. It is functionally related to a gallic acid. It is a conjugate acid of a syringate. Syringic acid is a natural product found in Visnea mocanera, Pittosporum illicioides, and other organisms with data available. Syringic acid is a metabolite found in or produced by Saccharomyces cerevisiae. Present in various plants free and combined, e.g. principal phenolic constituent of soyabean meal (Glycine max) A dimethoxybenzene that is 3,5-dimethyl ether derivative of gallic acid. D019995 - Laboratory Chemicals > D007202 - Indicators and Reagents KEIO_ID S018 Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation. Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation.

   

Lapachol

4-hydroxy-3-(3-methylbut-2-en-1-yl)-1,2-dihydronaphthalene-1,2-dione

C15H14O3 (242.0942894)


Lapachol is a hydroxy-1,4-naphthoquinone that is 1,4-naphthoquinone substituted by hydroxy and 3-methylbut-2-en-1-yl groups at positions 2 and 3, respectively. It is a natural compound that exhibits antibacterial and anticancer properties, first isolated in 1882 from the bark of Tabebuia avellanedae. It has a role as a plant metabolite, an antineoplastic agent, an antibacterial agent and an anti-inflammatory agent. It is a hydroxy-1,4-naphthoquinone and an olefinic compound. NA is a natural product found in Plenckia populnea, Stereospermum colais, and other organisms with data available. A hydroxy-1,4-naphthoquinone that is 1,4-naphthoquinone substituted by hydroxy and 3-methylbut-2-en-1-yl groups at positions 2 and 3, respectively. It is a natural compound that exhibits antibacterial and anticancer properties, first isolated in 1882 from the bark of Tabebuia avellanedae. D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000981 - Antiprotozoal Agents D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000871 - Anthelmintics D000890 - Anti-Infective Agents > D000935 - Antifungal Agents D000890 - Anti-Infective Agents > D000998 - Antiviral Agents D000970 - Antineoplastic Agents [Raw Data] CB290_Lapachol_pos_40eV_CB000086.txt [Raw Data] CB290_Lapachol_pos_50eV_CB000086.txt [Raw Data] CB290_Lapachol_pos_10eV_CB000086.txt [Raw Data] CB290_Lapachol_pos_30eV_CB000086.txt [Raw Data] CB290_Lapachol_pos_20eV_CB000086.txt [Raw Data] CB290_Lapachol_neg_10eV_000049.txt [Raw Data] CB290_Lapachol_neg_20eV_000049.txt [Raw Data] CB290_Lapachol_neg_40eV_000049.txt [Raw Data] CB290_Lapachol_neg_50eV_000049.txt [Raw Data] CB290_Lapachol_neg_30eV_000049.txt Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2]. Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2].

   
   

Lirioresinol A

4-[6-(4-hydroxy-3,5-dimethoxy-phenyl)-1,3,3a,4,6,6a-hexahydrofuro[3,4-c]furan-3-yl]-2,6-dimethoxy-phenol

C22H26O8 (418.1627596)


Syringaresinol is a lignan that is 7,9:7,9-diepoxylignane substituted by hydroxy groups at positions 4 and 4 and methoxy groups at positions 3, 3, 5 and 5 respectively. It has a role as a plant metabolite. It is a lignan, a polyphenol, an aromatic ether, a furofuran and a polyether. Syringaresinol is a natural product found in Dracaena draco, Ficus septica, and other organisms with data available. A lignan that is 7,9:7,9-diepoxylignane substituted by hydroxy groups at positions 4 and 4 and methoxy groups at positions 3, 3, 5 and 5 respectively. Isolated from Artemisia absinthium (wormwood). Lirioresinol A is found in alcoholic beverages and herbs and spices. Lirioresinol A is found in alcoholic beverages. Lirioresinol A is isolated from Artemisia absinthium (wormwood).

   

N-cis-Feruloyltyramine

(Z,2Z)-3-(4-hydroxy-3-methoxyphenyl)-N-[2-(4-hydroxyphenyl)ethyl]propa-2-enimidic acid

C18H19NO4 (313.1314014)


Isolated from bell pepper. N-cis-Feruloyltyramine is found in many foods, some of which are cherimoya, yellow bell pepper, green bell pepper, and pepper (c. annuum). N-cis-Feruloyltyramine is found in cherimoya. N-cis-Feruloyltyramine is isolated from bell pepper.

   

beta-Amyrin

4,4,6a,6b,8a,11,11,14b-octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-icosahydropicen-3-ol

C30H50O (426.386145)


Beta-amryin, also known as B-amryin, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Beta-amryin is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Beta-amryin can be found in pigeon pea, which makes beta-amryin a potential biomarker for the consumption of this food product.

   

Friedelin

4,4a,6b,8a,11,11,12b,14a-octamethyl-docosahydropicen-3-one

C30H50O (426.386145)


Friedelin is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Friedelin is practically insoluble (in water) and an extremely weak basic (essentially neutral) compound (based on its pKa). Friedelin can be found in a number of food items such as apple, pear, mammee apple, and sugar apple, which makes friedelin a potential biomarker for the consumption of these food products. Friedelin is a triterpenoid chemical compound found in Azima tetracantha, Orostachys japonica, and Quercus stenophylla. Friedelin is also found in the roots of the Cannabis plant .

   

lapachol

4-hydroxy-3-(3-methylbut-2-en-1-yl)-1,2-dihydronaphthalene-1,2-dione

C15H14O3 (242.0942894)


D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000981 - Antiprotozoal Agents D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000871 - Anthelmintics D000890 - Anti-Infective Agents > D000935 - Antifungal Agents D000890 - Anti-Infective Agents > D000998 - Antiviral Agents D000970 - Antineoplastic Agents Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2]. Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2].

   

Sinapaldehyde

3-(4-hydroxy-3,5-dimethoxyphenyl)prop-2-enal

C11H12O4 (208.0735552)


   
   
   
   

β-Amyrin

beta-amyrin-H2O

C30H50O (426.386145)


Beta-amyrin, also known as amyrin or (3beta)-olean-12-en-3-ol, is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Thus, beta-amyrin is considered to be an isoprenoid lipid molecule. Beta-amyrin is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Beta-amyrin can be synthesized from oleanane. Beta-amyrin is also a parent compound for other transformation products, including but not limited to, erythrodiol, glycyrrhetaldehyde, and 24-hydroxy-beta-amyrin. Beta-amyrin can be found in a number of food items such as thistle, pepper (c. baccatum), wakame, and endive, which makes beta-amyrin a potential biomarker for the consumption of these food products. The amyrins are three closely related natural chemical compounds of the triterpene class. They are designated α-amyrin (ursane skeleton), β-amyrin (oleanane skeleton) and δ-amyrin. Each is a pentacyclic triterpenol with the chemical formula C30H50O. They are widely distributed in nature and have been isolated from a variety of plant sources such as epicuticular wax. In plant biosynthesis, α-amyrin is the precursor of ursolic acid and β-amyrin is the precursor of oleanolic acid. All three amyrins occur in the surface wax of tomato fruit. α-Amyrin is found in dandelion coffee . β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1]. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1].

   

Flavoglaucin

Flavoglaucin

C19H28O3 (304.2038338)


D000893 - Anti-Inflammatory Agents > D000894 - Anti-Inflammatory Agents, Non-Steroidal > D012459 - Salicylates A natural product found in Eurotium repens.

   
   

Isotetrahydroauroglaucin

Isotetrahydroauroglaucin

C19H26O3 (302.1881846)


A member of the class of benzaldehydes that is benzaldehyde substituted by hydroxy groups at positions 3 and 6, a prenyl group at position 5 and a a hept-5-en-1-yl at position 2. Isolated from Chaetomium globosum and other fungal species, it exhibits radical scavenging activities.

   

Scopoletin

Scopoletin

C10H8O4 (192.0422568)


relative retention time with respect to 9-anthracene Carboxylic Acid is 0.636 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.637 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.629 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.631 IPB_RECORD: 1582; CONFIDENCE confident structure Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Scoparone

6,7-dimethoxycoumarin

C11H10O4 (206.057906)


Annotation level-1 D005765 - Gastrointestinal Agents > D002756 - Cholagogues and Choleretics D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D002317 - Cardiovascular Agents > D014665 - Vasodilator Agents Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1]. Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1].

   

4-hydroxybenzoate

4-Hydroxybenzoic acid

C7H6O3 (138.03169259999999)


4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL. 4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL.

   

Vanillic Acid

Vanillic acid hexoside

C8H8O4 (168.0422568)


Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1]. Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1].

   

p-Hydroxybenzaldehyde

p-Hydroxybenzaldehyde

C7H6O2 (122.0367776)


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.

   

p-Hydroxybenzoic acid

p-Hydroxybenzoic acid

C7H6O3 (138.03169259999999)


4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL. 4-Hydroxybenzoic acid, a phenolic derivative of benzoic acid, could inhibit most gram-positive and some gram-negative bacteria, with an IC50 of 160 μg/mL.

   

Betulin

NCGC00168803-04_C30H50O2_Lup-20(29)-ene-3,28-diol, (3beta)-

C30H50O2 (442.38106)


Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line. Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line. Betulin (Trochol), is a sterol regulatory element-binding protein (SREBP) inhibitor with an IC50 of 14.5 μM in K562 cell line.

   

C19H20O3

NCGC00386103-01_C19H20O3_

C19H20O3 (296.14123700000005)


   

Syringic acid

Syringic acid

C9H10O5 (198.052821)


Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation. Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation.

   

4-Hydroxybenzaldehyde

4-Hydroxybenzaldehyde

C7H6O2 (122.0367776)


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.

   

syringaresinol

4-[4-(4-hydroxy-3,5-dimethoxyphenyl)-hexahydrofuro[3,4-c]furan-1-yl]-2,6-dimethoxyphenol

C22H26O8 (418.1627596)


   

N-cis-Feruloyltyramine

(2Z)-3-(4-hydroxy-3-methoxyphenyl)-N-[2-(4-hydroxyphenyl)ethyl]prop-2-enamide

C18H19NO4 (313.1314014)


   

Tetrahydroauroglaucin

Tetrahydroauroglaucin

C19H26O3 (302.1881846)


A natural product found in Eurotium repens.

   

Scopoletol

2H-1-Benzopyran-2-one, 7-hydroxy-6-methoxy- (9CI)

C10H8O4 (192.0422568)


Scopoletin is an inhibitor of acetylcholinesterase (AChE). Scopoletin is an inhibitor of acetylcholinesterase (AChE).

   

Vanillate

4-Hydroxy-3-methoxybenzoic acid

C8H8O4 (168.0422568)


Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1]. Vanillic acid is a flavoring agent found in edible plants and fruits, also found in Angelica sinensis. Vanillic acid inhibits NF-κB activation. Anti-inflammatory, antibacterial, and chemopreventive effects[1].

   

Caryophyllin

(4aS,5S,6aS,6bR,8R,8aR,10S,12aR,12bR,14bS)-10-Hydroxy-2,2,6a,6b,9,9,12a-heptamethyl-1,3,4,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-octadecahydro-2H-picene-4a-carboxylic acid

C30H48O3 (456.36032579999994)


Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities. Oleanolic acid (Caryophyllin) is a natural compound from plants with anti-tumor activities.

   

Cedar acid

InChI=1\C9H10O5\c1-13-6-3-5(9(11)12)4-7(14-2)8(6)10\h3-4,10H,1-2H3,(H,11,12

C9H10O5 (198.052821)


D019995 - Laboratory Chemicals > D007202 - Indicators and Reagents Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation. Syringic acid is correlated with high antioxidant activity and inhibition of LDL oxidation.

   

FR-0985

4-08-00-00251 (Beilstein Handbook Reference)

C7H6O2 (122.0367776)


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.

   

Scoparon

5-18-03-00204 (Beilstein Handbook Reference)

C11H10O4 (206.057906)


D005765 - Gastrointestinal Agents > D002756 - Cholagogues and Choleretics D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D002317 - Cardiovascular Agents > D000889 - Anti-Arrhythmia Agents D002317 - Cardiovascular Agents > D014665 - Vasodilator Agents Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1]. Scoparone is isolated from Artemisia capillaris Thunb., has anticoagulant, vasorelaxant antioxidant, anti-inflammatory activities[1].

   

Tecomin

InChI=1\C15H14O3\c1-9(2)7-8-12-13(16)10-5-3-4-6-11(10)14(17)15(12)18\h3-7,18H,8H2,1-2H

C15H14O3 (242.0942894)


D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000981 - Antiprotozoal Agents D000890 - Anti-Infective Agents > D000977 - Antiparasitic Agents > D000871 - Anthelmintics D000890 - Anti-Infective Agents > D000935 - Antifungal Agents D000890 - Anti-Infective Agents > D000998 - Antiviral Agents D000970 - Antineoplastic Agents Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2]. Lapachol is a naphthoquinone that was first isolated from Tabebuia avellanedae (Bignoniaceae)[1]. Lapachol shows anti-abscess, anti-ulcer, antileishmanial, anticarcinomic, antiedemic, anti-inflammatory, antimalarial, antiseptic, antitumor, antiviral, antibacterial, antifungal and pesticidal activities[2].

   

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-[(1E)-pent-1-en-1-yl]-1-benzofuran-4-carbaldehyde

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-[(1E)-pent-1-en-1-yl]-1-benzofuran-4-carbaldehyde

C19H22O3 (298.15688620000003)


   

6-hydroxy-2-(3-hydroxybut-1-en-1-yl)-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

6-hydroxy-2-(3-hydroxybut-1-en-1-yl)-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

C19H24O4 (316.1674504)


   

2-(hepta-1,5-dien-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-(hepta-1,5-dien-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H24O3 (300.1725354)


   

(2z)-3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

(2z)-3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

C18H19NO4 (313.1314014)


   

2-[(1e,5e)-hepta-1,5-dien-1-yl]-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-[(1e,5e)-hepta-1,5-dien-1-yl]-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H24O3 (300.1725354)


   

2-(hept-1-en-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-(hept-1-en-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H26O3 (302.1881846)


   

(1r,3as,3br,5as,6r,9as,9bs,11ar)-1-[(2r,4e)-6-hydroxy-6-methylhept-4-en-2-yl]-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

(1r,3as,3br,5as,6r,9as,9bs,11ar)-1-[(2r,4e)-6-hydroxy-6-methylhept-4-en-2-yl]-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

C30H50O2 (442.38106)


   

(4r)-4,8,12-trimethyl-2-oxatricyclo[7.3.1.0⁵,¹³]trideca-1(12),5,7,9(13)-tetraene-10,11-dione

(4r)-4,8,12-trimethyl-2-oxatricyclo[7.3.1.0⁵,¹³]trideca-1(12),5,7,9(13)-tetraene-10,11-dione

C15H14O3 (242.0942894)


   

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-pentyl-1-benzofuran-4-carbaldehyde

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-pentyl-1-benzofuran-4-carbaldehyde

C19H24O3 (300.1725354)


   

(1r)-1,5,8-trimethyl-1h,2h-naphtho[2,1-b]furan-6,7-dione

(1r)-1,5,8-trimethyl-1h,2h-naphtho[2,1-b]furan-6,7-dione

C15H14O3 (242.0942894)


   

(7r,8r,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

(7r,8r,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O2 (232.14632200000003)


   

3a-(hydroxymethyl)-5a,5b,8,8,11a-pentamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-ol

3a-(hydroxymethyl)-5a,5b,8,8,11a-pentamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysen-9-ol

C30H50O2 (442.38106)


   

7-hydroxy-5-isopropyl-3-methylnaphthalene-1,2-dione

7-hydroxy-5-isopropyl-3-methylnaphthalene-1,2-dione

C14H14O3 (230.0942894)


   

1-(6-hydroxy-6-methylhept-4-en-2-yl)-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

1-(6-hydroxy-6-methylhept-4-en-2-yl)-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

C30H50O2 (442.38106)


   

3-[2-(1,2-dihydroxypropan-2-yl)-4,5,7-trihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

3-[2-(1,2-dihydroxypropan-2-yl)-4,5,7-trihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

C30H50O7 (522.355635)


   

7,8-dihydroxy-5-isopropyl-3-methylnaphthalene-1,2-dione

7,8-dihydroxy-5-isopropyl-3-methylnaphthalene-1,2-dione

C14H14O4 (246.0892044)


   

n-[2-(4-hydroxy-3,5-dimethoxyphenyl)ethyl]-3-(4-hydroxy-3-methoxyphenyl)prop-2-enimidic acid

n-[2-(4-hydroxy-3,5-dimethoxyphenyl)ethyl]-3-(4-hydroxy-3-methoxyphenyl)prop-2-enimidic acid

C20H23NO6 (373.1525298)


   

3,12-dihydroxy-7-methyl-11-(3-methylbut-2-en-1-yl)-8-oxatricyclo[7.4.0.0²,⁶]trideca-1(9),10,12-triene-13-carbaldehyde

3,12-dihydroxy-7-methyl-11-(3-methylbut-2-en-1-yl)-8-oxatricyclo[7.4.0.0²,⁶]trideca-1(9),10,12-triene-13-carbaldehyde

C19H24O4 (316.1674504)


   

(2e)-3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

(2e)-3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

C18H19NO4 (313.1314014)


   

(1r,3as,3br,7s,9ar,9br,11ar)-1-[(2r,4e)-6-hydroxy-6-methylhept-4-en-2-yl]-3a,6,6,9b,11a-pentamethyl-1h,2h,3h,3bh,4h,7h,8h,9h,9ah,10h,11h-cyclopenta[a]phenanthren-7-ol

(1r,3as,3br,7s,9ar,9br,11ar)-1-[(2r,4e)-6-hydroxy-6-methylhept-4-en-2-yl]-3a,6,6,9b,11a-pentamethyl-1h,2h,3h,3bh,4h,7h,8h,9h,9ah,10h,11h-cyclopenta[a]phenanthren-7-ol

C30H50O2 (442.38106)


   

1-(5-hydroxy-6-methylhept-6-en-2-yl)-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

1-(5-hydroxy-6-methylhept-6-en-2-yl)-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

C30H50O2 (442.38106)


   

4,8,12-trimethyl-2-oxatricyclo[7.3.1.0⁵,¹³]trideca-1(12),3,5(13),6,8-pentaene-10,11-dione

4,8,12-trimethyl-2-oxatricyclo[7.3.1.0⁵,¹³]trideca-1(12),3,5(13),6,8-pentaene-10,11-dione

C15H12O3 (240.0786402)


   

5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O3 (248.14123700000002)


   

5,11-dihydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),4(12),5,7,9-pentaen-3-one

5,11-dihydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),4(12),5,7,9-pentaen-3-one

C15H14O4 (258.0892044)


   

3-[(1r,2r,4ar,4bs,5s,6ar,7s,10ar,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

3-[(1r,2r,4ar,4bs,5s,6ar,7s,10ar,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

C30H50O6 (506.36072)


   

3-[2-(1,2-dihydroxypropan-2-yl)-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

3-[2-(1,2-dihydroxypropan-2-yl)-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

C30H48O6 (504.3450708)


   

7-hydroxy-6-[(2-hydroxy-3-methylbut-3-en-1-yl)oxy]chromen-2-one

7-hydroxy-6-[(2-hydroxy-3-methylbut-3-en-1-yl)oxy]chromen-2-one

C14H14O5 (262.0841194)


   

6-hydroxy-7-(3-methylbut-2-en-1-yl)-2-(3-oxobut-1-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

6-hydroxy-7-(3-methylbut-2-en-1-yl)-2-(3-oxobut-1-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

C19H22O4 (314.1518012)


   

(7r)-11-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),3,8(12),9-tetraen-5-one

(7r)-11-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),3,8(12),9-tetraen-5-one

C15H16O3 (244.1099386)


   

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-(pent-1-en-1-yl)-1-benzofuran-4-carbaldehyde

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-(pent-1-en-1-yl)-1-benzofuran-4-carbaldehyde

C19H22O3 (298.15688620000003)


   

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-[(1e,3e)-penta-1,3-dien-1-yl]-1-benzofuran-4-carbaldehyde

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-[(1e,3e)-penta-1,3-dien-1-yl]-1-benzofuran-4-carbaldehyde

C19H20O3 (296.14123700000005)


   

(2e)-n-[2-(4-hydroxy-3,5-dimethoxyphenyl)ethyl]-3-(4-hydroxy-3-methoxyphenyl)prop-2-enimidic acid

(2e)-n-[2-(4-hydroxy-3,5-dimethoxyphenyl)ethyl]-3-(4-hydroxy-3-methoxyphenyl)prop-2-enimidic acid

C20H23NO6 (373.1525298)


   

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-(penta-1,3-dien-1-yl)-1-benzofuran-4-carbaldehyde

5-hydroxy-6-(3-methylbut-2-en-1-yl)-2-(penta-1,3-dien-1-yl)-1-benzofuran-4-carbaldehyde

C19H20O3 (296.14123700000005)


   

7,8-dihydroxy-4-isopropyl-6-methylnaphthalene-1,2-dione

7,8-dihydroxy-4-isopropyl-6-methylnaphthalene-1,2-dione

C14H14O4 (246.0892044)


   

(2s)-6-hydroxy-2-[(1e,3r)-3-hydroxybut-1-en-1-yl]-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

(2s)-6-hydroxy-2-[(1e,3r)-3-hydroxybut-1-en-1-yl]-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

C19H24O4 (316.1674504)


   

(2s)-6-hydroxy-7-(3-methylbut-2-en-1-yl)-2-[(1e)-3-oxobut-1-en-1-yl]-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

(2s)-6-hydroxy-7-(3-methylbut-2-en-1-yl)-2-[(1e)-3-oxobut-1-en-1-yl]-3,4-dihydro-2h-1-benzopyran-5-carbaldehyde

C19H22O4 (314.1518012)


   

(5r,7r,8r,10s)-5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

(5r,7r,8r,10s)-5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O3 (248.14123700000002)


   

7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O2 (232.14632200000003)


   

2-[(3e,5e)-hepta-3,5-dien-1-yl]-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-[(3e,5e)-hepta-3,5-dien-1-yl]-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H24O3 (300.1725354)


   

(7r,8r,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-diene-5,11-dione

(7r,8r,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-diene-5,11-dione

C15H18O3 (246.1255878)


   

(2s,3s,6s,7r)-3,12-dihydroxy-7-methyl-11-(3-methylbut-2-en-1-yl)-8-oxatricyclo[7.4.0.0²,⁶]trideca-1(9),10,12-triene-13-carbaldehyde

(2s,3s,6s,7r)-3,12-dihydroxy-7-methyl-11-(3-methylbut-2-en-1-yl)-8-oxatricyclo[7.4.0.0²,⁶]trideca-1(9),10,12-triene-13-carbaldehyde

C19H24O4 (316.1674504)


   

7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-diene-5,11-dione

7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-diene-5,11-dione

C15H18O3 (246.1255878)


   

1,5,8-trimethyl-1h,2h-naphtho[2,1-b]furan-6,7-dione

1,5,8-trimethyl-1h,2h-naphtho[2,1-b]furan-6,7-dione

C15H14O3 (242.0942894)


   

7-hydroxy-6-{[(2s)-2-hydroxy-3-methylbut-3-en-1-yl]oxy}chromen-2-one

7-hydroxy-6-{[(2s)-2-hydroxy-3-methylbut-3-en-1-yl]oxy}chromen-2-one

C14H14O5 (262.0841194)


   

3-[(1r,2r,4s,4ar,4br,6ar,7r,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-4,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

3-[(1r,2r,4s,4ar,4br,6ar,7r,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-4,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

C30H48O6 (504.3450708)


   

3-[(1r,2r,4ar,4bs,5s,6ar,7r,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

3-[(1r,2r,4ar,4bs,5s,6ar,7r,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

C30H48O6 (504.3450708)


   

11-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),3,8(12),9-tetraen-5-one

11-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),3,8(12),9-tetraen-5-one

C15H16O3 (244.1099386)


   

3-[2-(1,2-dihydroxypropan-2-yl)-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

3-[2-(1,2-dihydroxypropan-2-yl)-5,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

C30H50O6 (506.36072)


   

(1r,3as,3br,5as,6r,9as,9bs,11ar)-1-[(2r,5r)-5-hydroxy-6-methylhept-6-en-2-yl]-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

(1r,3as,3br,5as,6r,9as,9bs,11ar)-1-[(2r,5r)-5-hydroxy-6-methylhept-6-en-2-yl]-3a,5a,6,9b,11a-pentamethyl-dodecahydrocyclopenta[a]phenanthren-7-one

C30H50O2 (442.38106)


   

(7r,8s,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

(7r,8s,10s)-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O2 (232.14632200000003)


   

3-[(1r,2r,4r,4ar,4br,5s,6ar,7s,10ar,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-4,5,7-trihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

3-[(1r,2r,4r,4ar,4br,5s,6ar,7s,10ar,12ar)-2-[(2r)-1,2-dihydroxypropan-2-yl]-4,5,7-trihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,10a,12,12a-decahydro-2h-chrysen-1-yl]propanoic acid

C30H50O7 (522.355635)


   

2-(hepta-3,5-dien-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-(hepta-3,5-dien-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H24O3 (300.1725354)


   

(5r,7s,8r,10r)-5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

(5r,7s,8r,10r)-5-hydroxy-7-isopropyl-10-methyl-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(12),3-dien-11-one

C15H20O3 (248.14123700000002)


   

3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

3-(4-hydroxy-3-methoxyphenyl)-n-[2-(4-hydroxyphenyl)ethyl]prop-2-enimidic acid

C18H19NO4 (313.1314014)


   

1-(6-hydroxy-6-methylhept-4-en-2-yl)-3a,6,6,9b,11a-pentamethyl-1h,2h,3h,3bh,4h,7h,8h,9h,9ah,10h,11h-cyclopenta[a]phenanthren-7-ol

1-(6-hydroxy-6-methylhept-4-en-2-yl)-3a,6,6,9b,11a-pentamethyl-1h,2h,3h,3bh,4h,7h,8h,9h,9ah,10h,11h-cyclopenta[a]phenanthren-7-ol

C30H50O2 (442.38106)


   

2-(hept-5-en-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

2-(hept-5-en-1-yl)-3,6-dihydroxy-5-(3-methylbut-2-en-1-yl)benzaldehyde

C19H26O3 (302.1881846)


   

6-hydroxy-3,3,11-trimethyl-9,10-dioxo-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),4,6,8(12)-tetraene-7-carbaldehyde

6-hydroxy-3,3,11-trimethyl-9,10-dioxo-2-oxatricyclo[6.3.1.0⁴,¹²]dodeca-1(11),4,6,8(12)-tetraene-7-carbaldehyde

C15H12O5 (272.0684702)


   

3-[2-(1,2-dihydroxypropan-2-yl)-4,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

3-[2-(1,2-dihydroxypropan-2-yl)-4,7-dihydroxy-1,4a,4b,6a,9,9-hexamethyl-3,4,5,6,7,8,10,12a-octahydro-2h-chrysen-1-yl]propanoic acid

C30H48O6 (504.3450708)