NCBI Taxonomy: 271749

Cratoxylum cochinchinense (ncbi_taxid: 271749)

found 500 associated metabolites at species taxonomy rank level.

Ancestor: Cratoxylum

Child Taxonomies: none taxonomy data.

Quercitrin

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-(((2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyltetrahydro-2H-pyran-2-yl)oxy)-4H-chromen-4-one

C21H20O11 (448.100557)


Quercitrin, also known as quercimelin or quercitronic acid, belongs to the class of organic compounds known as flavonoid-3-o-glycosides. These are phenolic compounds containing a flavonoid moiety which is O-glycosidically linked to carbohydrate moiety at the C3-position. A quercetin O-glycoside that is quercetin substituted by a alpha-L-rhamnosyl moiety at position 3 via a glycosidic linkage. Quercitrin exists in all living organisms, ranging from bacteria to humans. Quercitrin is found, on average, in the highest concentration within a few different foods, such as lingonberries, american cranberries, and olives and in a lower concentration in common beans, tea, and welsh onions. Quercitrin has also been detected, but not quantified, in several different foods, such as guava, bilberries, common pea, apricots, and spearmints. Quercitrin is a quercetin O-glycoside that is quercetin substituted by a alpha-L-rhamnosyl moiety at position 3 via a glycosidic linkage. It has a role as an antioxidant, an antileishmanial agent, an EC 1.1.1.184 [carbonyl reductase (NADPH)] inhibitor, an EC 1.1.1.21 (aldehyde reductase) inhibitor, an EC 1.14.18.1 (tyrosinase) inhibitor and a plant metabolite. It is a monosaccharide derivative, a tetrahydroxyflavone, an alpha-L-rhamnoside and a quercetin O-glycoside. It is a conjugate acid of a quercitrin-7-olate. Quercitrin is a natural product found in Xylopia emarginata, Lotus ucrainicus, and other organisms with data available. Quercitrin is a glycoside formed from the flavonoid quercetin and the deoxy sugar rhamnose. It is a constituent of the dye quercitron. Quercitrin is found in many foods, some of which are garden tomato (variety), kiwi, italian sweet red pepper, and guava. A quercetin O-glycoside that is quercetin substituted by a alpha-L-rhamnosyl moiety at position 3 via a glycosidic linkage. [Raw Data] CBA03_Quercitrin_pos_10eV.txt [Raw Data] CBA03_Quercitrin_pos_20eV.txt [Raw Data] CBA03_Quercitrin_neg_50eV.txt [Raw Data] CBA03_Quercitrin_neg_30eV.txt [Raw Data] CBA03_Quercitrin_neg_10eV.txt [Raw Data] CBA03_Quercitrin_neg_40eV.txt [Raw Data] CBA03_Quercitrin_neg_20eV.txt [Raw Data] CBA03_Quercitrin_pos_50eV.txt [Raw Data] CBA03_Quercitrin_pos_30eV.txt [Raw Data] CBA03_Quercitrin_pos_40eV.txt Quercitrin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=522-12-3 (retrieved 2024-07-09) (CAS RN: 522-12-3). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2]. Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2]. Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2].

   

Quercetin

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

C15H10O7 (302.042651)


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].

   

Lupeol

(1R,3aR,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-3a,5a,5b,8,8,11a-hexamethyl-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

C30H50O (426.386145)


Lupeol is a pentacyclic triterpenoid that is lupane in which the hydrogen at the 3beta position is substituted by a hydroxy group. It occurs in the skin of lupin seeds, as well as in the latex of fig trees and of rubber plants. It is also found in many edible fruits and vegetables. It has a role as an anti-inflammatory drug and a plant metabolite. It is a secondary alcohol and a pentacyclic triterpenoid. It derives from a hydride of a lupane. Lupeol has been investigated for the treatment of Acne. Lupeol is a natural product found in Ficus auriculata, Ficus septica, and other organisms with data available. See also: Calendula Officinalis Flower (part of). A pentacyclic triterpenoid that is lupane in which the hydrogen at the 3beta position is substituted by a hydroxy group. It occurs in the skin of lupin seeds, as well as in the latex of fig trees and of rubber plants. It is also found in many edible fruits and vegetables. D000893 - Anti-Inflammatory Agents Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1]. Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[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 .

   

Betulinic acid

(1R,3aS,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-9-hydroxy-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]chrysene-3a-carboxylic acid

C30H48O3 (456.36032579999994)


Betulinic acid is a pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-carboxy substituents. It is found in the bark and other plant parts of several species of plants including Syzygium claviflorum. It exhibits anti-HIV, antimalarial, antineoplastic and anti-inflammatory properties. It has a role as an EC 5.99.1.3 [DNA topoisomerase (ATP-hydrolysing)] inhibitor, an anti-HIV agent, an antimalarial, an anti-inflammatory agent, an antineoplastic agent and a plant metabolite. It is a pentacyclic triterpenoid and a hydroxy monocarboxylic acid. It derives from a hydride of a lupane. Betulinic Acid has been used in trials studying the treatment of Dysplastic Nevus Syndrome. Betulinic acid is a natural product found in Ficus auriculata, Gladiolus italicus, and other organisms with data available. Betulinic Acid is a pentacyclic lupane-type triterpene derivative of betulin (isolated from the bark of Betula alba, the common white birch) with antiinflammatory, anti-HIV and antineoplastic activities. Betulinic acid induces apoptosis through induction of changes in mitochondrial membrane potential, production of reactive oxygen species, and opening of mitochondrial permeability transition pores, resulting in the release of mitochondrial apogenic factors, activation of caspases, and DNA fragmentation. Although originally thought to exhibit specific cytotoxicity against melanoma cells, this agent has been found to be cytotoxic against non-melanoma tumor cell types including neuroectodermal and brain tumor cells. A lupane-type triterpene derivative of betulin which was originally isolated from BETULA or birch tree. It has anti-inflammatory, anti-HIV and antineoplastic activities. See also: Jujube fruit (part of); Paeonia lactiflora root (part of). Betulinic acid is found in abiyuch. Betulinic acid is a naturally occurring pentacyclic triterpenoid which has anti-retroviral, anti-malarial, and anti-inflammatory properties, as well as a more recently discovered potential as an anticancer agent, by inhibition of topoisomerase. It is found in the bark of several species of plants, principally the white birch (Betula pubescens) from which it gets its name, but also the Ber tree (Ziziphus mauritiana), the tropical carnivorous plants Triphyophyllum peltatum and Ancistrocladus heyneanus, Diospyros leucomelas a member of the persimmon family, Tetracera boiviniana, the jambul (Syzygium formosanum), flowering quince (Chaenomeles sinensis), Rosemary, and Pulsatilla chinensis. Controversial is a role of p53 in betulinic acid-induced apoptosis. Fulda suggested p53-independent mechanism of the apoptosis, basing on fact of no accumulation of wild-type p53 detected upon treatment with the betulinic acid, whereas wild-type p53 protein strongly increased after treatment with doxorubicin. The suggestion is supported by study of Raisova. On the other hand Rieber suggested that betulinic acid exerts its inhibitory effect on human metastatic melanoma partly by increasing p53 A pentacyclic triterpenoid that is lupane having a double bond at position 20(29) as well as 3beta-hydroxy and 28-carboxy substituents. It is found in the bark and other plant parts of several species of plants including Syzygium claviflorum. It exhibits anti-HIV, antimalarial, antineoplastic and anti-inflammatory properties. C308 - Immunotherapeutic Agent > C2139 - Immunostimulant Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Epibetulinic acid exhibits potent inhibitory effects on NO and prostaglandin E2 (PGE2) production in mouse macrophages (RAW 264.7) stimulated with bacterial endotoxin with IC50s of 0.7 and 0.6 μM, respectively. Anti-inflammatory activity[1].

   

beta-Sitosterol 3-O-beta-D-galactopyranoside

(2R,3R,4S,5S,6R)-2-(((3S,8S,9S,10R,13R,14S,17R)-17-((2R,5R)-5-Ethyl-6-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,8,9,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-yl)oxy)-6-(hydroxymethyl)tetrahydro-2H-pyran-3,4,5-triol

C35H60O6 (576.4389659999999)


Daucosterol is a steroid saponin that is sitosterol attached to a beta-D-glucopyranosyl residue at position 3 via a glycosidic linkage. It has bee isolated from Panax japonicus var. major and Breynia fruticosa. It has a role as a plant metabolite. It is a steroid saponin, a beta-D-glucoside and a monosaccharide derivative. It is functionally related to a sitosterol. It derives from a hydride of a stigmastane. Sitogluside is a natural product found in Ophiopogon intermedius, Ophiopogon jaburan, and other organisms with data available. beta-Sitosterol 3-O-beta-D-galactopyranoside is found in herbs and spices. beta-Sitosterol 3-O-beta-D-galactopyranoside is a constituent of Hibiscus sabdariffa (roselle) leaves. C308 - Immunotherapeutic Agent Daucosterol is a natural sterol compound. Daucosterol is a natural sterol compound.

   

Mesuaxanthone A

1,5-Dihydroxy-3-methoxyxanthone; 1,5-Hydroxy-3-methoxyxanthone

C14H10O5 (258.052821)


Mesuaxanthone A is a member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at bpositions 1 and 5 and a methoxy group at position 3. It has a role as a plant metabolite. It is a member of xanthones, a polyphenol and an aromatic ether. Mesuaxanthone A is a natural product found in Calophyllum inophyllum, Hypericum chinense, and other organisms with data available. A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at bpositions 1 and 5 and a methoxy group at position 3.

   

Caryophyllene alpha-oxide

[1R-(1R*,4R*,6R*,10S*)]- Caryophylene oxide Caryophyllene epoxide Caryophyllene oxyde Epoxycaryophyllene [1R-(1R*,4R*,6R*,10S*)]-4,12,12-trimethyl-9-methylene-5-oxatricyclo[8.2.0.04,6]dodecane <>-Caryophyllene epoxide <>-Caryophyllene oxide

C15H24O (220.18270539999997)


Caryophyllene oxide is an epoxide. It has a role as a metabolite. Caryophyllene oxide is a natural product found in Xylopia emarginata, Eupatorium altissimum, and other organisms with data available. See also: Cannabis sativa subsp. indica top (part of). Caryophyllene alpha-oxide is a minor produced of epoxidn. of KGV69-V. Minor production of epoxidn. of KGV69-V Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1]. Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1].

   

(+)-alpha-Pinene

(R)-(+)--Pinene;(+)--Pinene; (1R)-(+)--Pinene; (1R)--Pinene; (1R,5R)-(+)--Pinene

C10H16 (136.1251936)


alpha-Pinene (CAS: 80-56-8) is an organic compound of the terpene class and is one of two isomers of pinene. It is found in the oils of many species of many coniferous trees, notably the pine. It is also found in the essential oil of rosemary (Rosmarinus officinalis). Both enantiomers are known in nature. 1S,5S- or (-)-alpha-pinene is more common in European pines, whereas the 1R,5R- or (+)-alpha-isomer is more common in North America. The racemic mixture is present in some oils such as eucalyptus oil (Wikipedia). alpha-Pinene is an organic compound of the terpene class, one of two isomers of pinene. It is found in the oils of many species of many coniferous trees, notably the pine. It is also found in the essential oil of rosemary (Rosmarinus officinalis). Both enantiomers are known in nature; 1S,5S- or (-)-alpha-pinene is more common in European pines, whereas the 1R,5R- or (+)-alpha-isomer is more common in North America. The racemic mixture is present in some oils such as eucalyptus oil. (+)-alpha-pinene is the (+)-enantiomer of alpha-pinene. It has a role as a plant metabolite and a human metabolite. It is an enantiomer of a (-)-alpha-pinene. (+)-alpha-Pinene is a natural product found in Juniperus drupacea, Eucalyptus deglupta, and other organisms with data available. The (+)-enantiomer of alpha-pinene. (1R)-α-Pinene is a volatile monoterpene with antimicrobial activities. (1R)-α-Pinene reduces Bacillus cereus population growth, and exhibits repellent effects[1][2]. (1R)-α-Pinene is a volatile monoterpene with antimicrobial activities. (1R)-α-Pinene reduces Bacillus cereus population growth, and exhibits repellent effects[1][2].

   

(+)-Sesamin

1,3-BENZODIOXOLE, 5,5-(TETRAHYDRO-1H,3H-FURO(3,4-C)FURAN-1,4-DIYL)BIS-, (1S-(1.ALPHA.,3A .ALPHA.,4.ALPHA.,6A .ALPHA.))-

C20H18O6 (354.1103328)


(+)-Sesamin, also known as fagarol or sezamin, belongs to the class of organic compounds known as furanoid lignans. These are lignans with a structure that contains either a tetrahydrofuran ring, a furan ring, or a furofuan ring system, that arises from the joining of the two phenylpropanoid units. (+)-Sesamin is an extremely weak basic (essentially neutral) compound (based on its pKa). (+)-Sesamin is found, on average, in the highest concentration within sesames. (+)-Sesamin has also been detected, but not quantified in, several different foods, such as fats and oils, flaxseeds, ginkgo nuts, and ucuhuba. This could make (+)-sesamin a potential biomarker for the consumption of these foods. (+)-sesamin is a lignan that consists of tetrahydro-1H,3H-furo[3,4-c]furan substituted by 1,3-benzodioxole groups at positions 1 and 4 (the 1S,3aR,4S,6aR stereoisomer). Isolated from Cinnamomum camphora, it exhibits cytotoxic activity. It has a role as an antineoplastic agent, a neuroprotective agent and a plant metabolite. It is a lignan, a member of benzodioxoles and a furofuran. Sesamin is a natural product found in Pandanus boninensis, Podolepis rugata, and other organisms with data available. See also: Sesame Oil (part of). A lignan that consists of tetrahydro-1H,3H-furo[3,4-c]furan substituted by 1,3-benzodioxole groups at positions 1 and 4 (the 1S,3aR,4S,6aR stereoisomer). Isolated from Cinnamomum camphora, it exhibits cytotoxic activity. Constituent of sesame oil. (+)-Sesamin is found in many foods, some of which are ginkgo nuts, sesame, flaxseed, and fats and oils. D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents > D000924 - Anticholesteremic Agents D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D020011 - Protective Agents > D000975 - Antioxidants D009676 - Noxae > D000963 - Antimetabolites (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2].

   

delta-Tocotrienol

(2R)-2,8-Dimethyl-2-[(3E,7E)-4,8,12-trimethyltrideca-3,7,11-trien-1-yl]-3,4-dihydro-2H-1-benzopyran-6-ol

C27H40O2 (396.302814)


delta-Tocotrienol, also known as 8-methyltocotrienol, belongs to the class of organic compounds known as tocotrienols. These are vitamin E derivatives containing an unsaturated trimethyltrideca-3,7,11-trien-1-yl chain attached to the carbon C6 atom of a benzopyran ring system. They differ from tocopherols that contain a saturated trimethyltridecyl chain. Thus, delta-tocotrienol is considered to be a quinone lipid molecule. delta-Tocotrienol is a very hydrophobic molecule, practically insoluble (in water), and relatively neutral. delta-Tocotrienol is found in American cranberry and palm oil. It is a nutriceutical with anticancer properties and a positive influence on the blood lipid profile. Constituent of palm oil. Nutriceutical with anticancer props. and a positive influence on the blood lipid profile. d-Tocotrienol is found in many foods, some of which are fennel, caraway, coconut, and lichee. Acquisition and generation of the data is financially supported in part by CREST/JST.

   

alpha-Mangostin

9H-Xanthen-9-one, 1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methyl-2-buten-1-yl)-

C24H26O6 (410.17292960000003)


Alpha-mangostin is a member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1, 3 and 6, a methoxy group at position 7, an oxo group at position 9 and prenyl groups at positions 2 and 8. Isolated from the stems of Cratoxylum cochinchinense, it exhibits antioxidant, antimicrobial and antitumour activities. It has a role as an antineoplastic agent, an antimicrobial agent, an antioxidant and a plant metabolite. It is a member of xanthones, a member of phenols and an aromatic ether. Mangostin is a plant/plant extract used in some OTC (over-the-counter) products. It is not an approved drug. alpha-Mangostin is a natural product found in Garcinia merguensis, Garcinia cowa, and other organisms with data available. See also: Garcinia mangostana fruit rind (part of). A member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1, 3 and 6, a methoxy group at position 7, an oxo group at position 9 and prenyl groups at positions 2 and 8. Isolated from the stems of Cratoxylum cochinchinense, it exhibits antioxidant, antimicrobial and antitumour activities. alpha-Mangostin is found in fruits. alpha-Mangostin is a pigment from Garcinia mangostana (mangosteen Pigment from Garcinia mangostana (mangosteen). alpha-Mangostin is found in fruits. alpha-Mangostin (α-Mangostin) is a dietary xanthone with broad biological activities, such as antioxidant, anti-allergic, antiviral, antibacterial, anti-inflammatory and anticancer effects. It is an inhibitor of mutant IDH1 (IDH1-R132H) with a Ki of 2.85 μM. alpha-Mangostin (α-Mangostin) is a dietary xanthone with broad biological activities, such as antioxidant, anti-allergic, antiviral, antibacterial, anti-inflammatory and anticancer effects. It is an inhibitor of mutant IDH1 (IDH1-R132H) with a Ki of 2.85 μM.

   

Norathyriol

1,3,6,7-TETRAHYDROXY-9H-XANTHEN-9-ONE

C13H8O6 (260.0320868)


A polyphenol metabolite detected in biological fluids [PhenolExplorer]

   

Euxanthone

1,7-Dihydroxy-9H-xanthen-9-one, 9CI

C13H8O4 (228.0422568)


Occurs in Mammea americana (mamey), Platonia insignis (bakuri) and Mangifera indica (mango). Euxanthone is found in fruits and mammee apple. Euxanthone is found in fruits. Euxanthone occurs in Mammea americana (mamey), Platonia insignis (bakuri) and Mangifera indica (mango

   

Gentisein

1,3,7-Trihydroxy-9H-xanthen-9-one, 9CI

C13H8O5 (244.0371718)


Gentisein is a member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 1, 3 and 7. It has a role as a plant metabolite. It is a member of xanthones and a polyphenol. Gentisein is a natural product found in Hypericum scabrum, Cratoxylum formosum, and other organisms with data available. A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 1, 3 and 7. Gentisein is found in alcoholic beverages. Gentisein is isolated from Gentiana lutea (yellow gentian Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2]. Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2]. Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2].

   

Macluraxanthone

3-Hydroxyblancoxanthone

C23H22O6 (394.1416312)


   

Pinene

(1R,5R)-2,6,6-Trimethylbicyclo[3.1.1]hept-2-ene

C10H16 (136.1251936)


Pinene (is a bicyclic monoterpene chemical compound. There are two structural isomers of pinene found in nature: alpha-pinene and beta-pinene. As the name suggests, both forms are important constituents of pine resin; they are also found in the resins of many other conifers, as well as in non-coniferous plants. Both isomers are used by many insects in their chemical communication system.

   

gamma-Mangostin

1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methyl-2- butenyl)-9H-xanthen-9-one

C23H24O6 (396.1572804)


Gamma-mangostin is a member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1, 3, 6 and 7, an oxo group at position 9 and prenyl groups at positions 2 and 8. Isolated from the stems of Cratoxylum cochinchinense, it exhibits antitumour activity. It has a role as an antineoplastic agent, a protein kinase inhibitor and a plant metabolite. It is a member of xanthones and a member of phenols. gamma-Mangostin is a natural product found in Hypericum androsaemum, Garcinia xipshuanbannaensis, and other organisms with data available. See also: Garcinia mangostana fruit rind (part of). A member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1, 3, 6 and 7, an oxo group at position 9 and prenyl groups at positions 2 and 8. Isolated from the stems of Cratoxylum cochinchinense, it exhibits antitumour activity. Constituent of Garcinia mangostana (mangosteen). gamma-Mangostin is found in fruits and purple mangosteen. gamma-Mangostin is found in fruits. gamma-Mangostin is a constituent of Garcinia mangostana (mangosteen) Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptors antagonist, purified from the fruit hull of the medicinal plant Garcinia mangostana. Gamma-Mangostin is a inhibitor of Transthyretin (TTR) fibrillization, it binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM) [1]. Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptor antagonist and potent epoxidase 2 (COX-2) inhibitor, as well as a transthyroxin protein (TTR) profibrosis inhibitor. Gamma-Mangostin binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM). Gamma-Mangostin has anti-inflammatory, antibacterial, antioxidant and anticancer activities, and can be used in the study of metabolic disorders such as diabetes[1][2][3][4][5]. Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptors antagonist, purified from the fruit hull of the medicinal plant Garcinia mangostana. Gamma-Mangostin is a inhibitor of Transthyretin (TTR) fibrillization, it binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM) [1].

   

beta-Mangostin

1,6-Dihydroxy-3,7-dimethoxy-2,8-bis(3-methyl-2-buten-1-yl)-9H-xanthen-9-one

C25H28O6 (424.1885788)


Beta-Mangostin is a member of xanthones. beta-Mangostin is a natural product found in Garcinia oliveri, Garcinia cowa, and other organisms with data available. From Garcinia mangostana (mangosteen). beta-Mangostin is found in fruits and purple mangosteen. beta-Mangostin is found in fruits. beta-Mangostin is from Garcinia mangostana (mangosteen). beta-Mangostin (β-Mangostin) is a xanthone compound present in Cratoxylum arborescens, with antibacterial and antimalarial activities. beta-Mangostin exhibits antimycobacterial activity against Mycobacterium tuberculosis with an MIC of 6.25 μg/mL. beta-Mangostin possesses in vitro antimalarial activity against Plasmodium falciparum, with an IC50 of 3.00 μg/mL. beta-Mangostin has potent anticancer activity against various cancers (such as hepatocellular carcinoma, leukaemic)[1][2][3][4]. beta-Mangostin (β-Mangostin) is a xanthone compound present in Cratoxylum arborescens, with antibacterial and antimalarial activities. beta-Mangostin exhibits antimycobacterial activity against Mycobacterium tuberculosis with an MIC of 6.25 μg/mL. beta-Mangostin possesses in vitro antimalarial activity against Plasmodium falciparum, with an IC50 of 3.00 μg/mL. beta-Mangostin has potent anticancer activity against various cancers (such as hepatocellular carcinoma, leukaemic)[1][2][3][4].

   

Garcinone D

1,3,6-TRIHYDROXY-8-(3-HYDROXY-3-METHYLBUTYL)-7-METHOXY-2-(3-METHYLBUT-2-EN-1-YL)-9H-XANTHEN-9-ONE

C24H28O7 (428.1834938)


Garcinone D is a natural product found in Garcinia morella, Garcinia dulcis, and other organisms with data available. From Garcinia mangostana (mangosteen). Garcinone D is found in fruits and purple mangosteen. Garcinone D is found in fruits. Garcinone D is from Garcinia mangostana (mangosteen).

   

3-Isomangostin hydrate

5,9-dihydroxy-7-(3-hydroxy-3-methylbutyl)-8-methoxy-2,2-dimethyl-2,3,4,6-tetrahydro-1,11-dioxatetracen-6-one

C24H28O7 (428.1834938)


3-Isomangostin hydrate is found in fruits. 3-Isomangostin hydrate is a constituent of Garcinia mangostana (mangosteen). Constituent of Garcinia mangostana (mangosteen). 3-Isomangostin hydrate is found in fruits.

   

Garcinone B

6,8,12-trihydroxy-2,2-dimethyl-7-(3-methylbut-2-en-1-yl)-2,5-dihydro-1,10-dioxatetraphen-5-one

C23H22O6 (394.1416312)


Constituent of Garcinia mangostana (mangosteen). Garcinone B is found in fruits and purple mangosteen. Garcinone B is found in fruits. Garcinone B is a constituent of Garcinia mangostana (mangosteen)

   

(1R,3As,4S,6aS)-1,4-di(benzo[d][1,3]dioxol-5-yl)hexahydrofuro[3,4-c]furan

5-[4-(2H-1,3-benzodioxol-5-yl)-hexahydrofuro[3,4-c]furan-1-yl]-2H-1,3-benzodioxole

C20H18O6 (354.1103328)


Constituent of sesame oil. (+)-Sesamin is found in many foods, some of which are ginkgo nuts, sesame, flaxseed, and fats and oils. D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents > D000924 - Anticholesteremic Agents D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D020011 - Protective Agents > D000975 - Antioxidants D009676 - Noxae > D000963 - Antimetabolites (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2].

   

(2R)-2,8-Dimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trienyl)-3,4-dihydrochromen-6-ol

2,8-dimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-3,4-dihydro-2H-1-benzopyran-6-ol

C27H40O2 (396.302814)


   

Tovophyllin A

6,8,12-trihydroxy-2,2-dimethyl-7,11-bis(3-methylbut-2-en-1-yl)-2,5-dihydro-1,10-dioxatetraphen-5-one

C28H30O6 (462.204228)


   

Dulcisxanthone B

1,6,7-Trihydroxy-3-methoxy-2,8-bis(3-methyl-2-buten-1-yl)-9H-xanthen-9-one

C24H26O6 (410.17292960000003)


   

Cratoxylone

1,3,6-Trihydroxy-2-(3-hydroxy-3-methylbutyl)-7-methoxy-8-(3-methylbut-2-en-1-yl)-9H-xanthen-9-one

C24H28O7 (428.1834938)


   

sesamin

1,3-Benzodioxole, 5,5-(tetrahydro-1H,3H-furo(3,4-c)furan-1,4-diyl)bis-, (1S-(1.alpha.,3a.alpha.,4.alpha.,6a.alpha.))-

C20H18O6 (354.1103328)


D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents > D000924 - Anticholesteremic Agents D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D020011 - Protective Agents > D000975 - Antioxidants D009676 - Noxae > D000963 - Antimetabolites relative retention time with respect to 9-anthracene Carboxylic Acid is 1.233 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.236 Asarinin is a natural product found in Piper mullesua, Machilus thunbergii, and other organisms with data available. (-)-Asarinin is a natural product found in Zanthoxylum austrosinense, Horsfieldia irya, and other organisms with data available. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. (-)-Asarinin is a extract lignan from Asarum sieboldii Miq., mainly produced in roots of this herb[1]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2]. Sesamin, abundant lignan found in sesame oil, is a potent and selective delta 5 desaturase inhibitor in polyunsaturated fatty acid biosynthesis. Sesamin exerts effective neuroprotection against cerbral ischemia[1][2].

   

Cratoxylone

9H-Xanthen-9-one,1,3,6-trihydroxy-2-(3-hydroxy-3-methylbutyl)-7-methoxy-8-(3-methyl-2-buten-1-yl)-

C24H28O7 (428.1834938)


Cratoxylone is a natural product found in Garcinia cowa, Pentadesma butyracea, and other organisms with data available.

   
   

Trimethyl citrate

Trimethyl citrate

C9H14O7 (234.0739494)


   

Cowaxanthone D

Dulcisxanthone F

C24H24O6 (408.1572804)


   

Cochinchinone C

Cochinchinone C

C24H26O6 (410.17292960000003)


A polycyclic cage that is a prenylated-caged xanthone isolated from Cratoxylum cochinchinense and has been shown to exhibit antimalarial and antioxidant activities.

   
   

Mesuaxanthone A

1,5-Dihydroxy-3-methoxyxanthone

C14H10O5 (258.052821)


   

5-O-methylcelebixanthone

5-O-methylcelebixanthone

C20H20O6 (356.125982)


A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 3 and 8, methoxy groups at position 2 and 4 and a prenyl group at position 1. A methyl ether derivative of celebixanthone, it is isolated from the roots of Cratoxylum cochinchinense and exhibits antimalarial activities.

   

celebixanthone

celebixanthone

C19H18O6 (342.11033280000004)


A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 3, 4 and 8, a methoxy group at position 2 and a prenyl group at position 1. Isolated from Cratoxylum celebicum and the roots of Cratoxylum cochinchinense, it exhibits cytotoxic and antimalarial activities.

   

1,2,5-Trihydroxyxanthone

1,2,5-Trihydroxyxanthone

C13H8O5 (244.0371718)


A member of the class of xanthones that is 9H-xanthen-9-one substituted bybhydroxy groups at positions 1, 2 and 5. It is isolated from Garcinia subelliptica.

   

Quercitrin

2-(3,4-dihydroxyphenyl)-5,7-dihydroxy-3-[[(2S,3R,4R,5R,6S)-3,4,5-trihydroxy-6-methyl-2-tetrahydropyranyl]oxy]-4-chromenone

C21H20O11 (448.100557)


Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2]. Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2]. Quercitrin (Quercetin 3-rhamnoside) is a bioflavonoid compound with potential anti-inflammation, antioxidative and neuroprotective effect. Quercitrin induces apoptosis of colon cancer cells. Quercitrin can be used for the research of cardiovascular and neurological disease research[1][2].

   

Quercetin

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

C15H10O7 (302.042651)


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].

   
   

1,3,7-trihydroxy-2,4-diisoprenylxanthone

1,3,7-trihydroxy-2,4-diisoprenylxanthone

C23H24O5 (380.1623654)


A member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1, 3 and 7, an oxo group at position 9 and prenyl groups at positions 2 and 4. It has been isolated from the stems of Cratoxylum cochinchinense

   

lupeol

Lup-20(29)-en-3.beta.-ol

C30H50O (426.386145)


D000893 - Anti-Inflammatory Agents Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1]. Lupeol (Clerodol; Monogynol B; Fagarasterol) is an active pentacyclic?triterpenoid, has anti-oxidant, anti-mutagenic, anti-tumor and anti-inflammatory activity. Lupeol is a potent?androgen receptor (AR)?inhibitor and can be used for cancer research, especially prostate cancer of androgen-dependent phenotype (ADPC) and castration resistant phenotype (CRPC)[1].

   

Hyperidixanthone

Hyperidixanthone

C30H22O10 (542.1212912)


A natural product found in Hypericum chinense.

   

Aspidinol C

Aspidinol C

C13H18O4 (238.1205028)


A natural product found in Hypericum chinense.

   

3-hydroxy-2-methoxyxanthen-9-one

3-hydroxy-2-methoxyxanthen-9-one

C14H10O4 (242.057906)


   

1,3-dihydroxy-5-methoxy-9H-xanthen-9-one

1,3-dihydroxy-5-methoxy-9H-xanthen-9-one

C14H10O5 (258.052821)


   
   

betulinic acid

betulinic acid

C30H48O3 (456.36032579999994)


Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4].

   
   

Daucosterol

(2R,3R,4S,5S,6R)-2-(((3S,8S,9S,10R,13R,14S,17R)-17-((2R,5R)-5-Ethyl-6-methylheptan-2-yl)-10,13-dimethyl-2,3,4,7,8,9,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-yl)oxy)-6-(hydroxymethyl)tetrahydro-2H-pyran-3,4,5-triol

C35H60O6 (576.4389659999999)


Daucosterol is a steroid saponin that is sitosterol attached to a beta-D-glucopyranosyl residue at position 3 via a glycosidic linkage. It has bee isolated from Panax japonicus var. major and Breynia fruticosa. It has a role as a plant metabolite. It is a steroid saponin, a beta-D-glucoside and a monosaccharide derivative. It is functionally related to a sitosterol. It derives from a hydride of a stigmastane. Sitogluside is a natural product found in Ophiopogon intermedius, Ophiopogon jaburan, and other organisms with data available. A steroid saponin that is sitosterol attached to a beta-D-glucopyranosyl residue at position 3 via a glycosidic linkage. It has bee isolated from Panax japonicus var. major and Breynia fruticosa. C308 - Immunotherapeutic Agent Daucosterol is a natural sterol compound. Daucosterol is a natural sterol compound.

   

Aspidinol D

Aspidinol D

C13H18O4 (238.1205028)


A natural product found in Hypericum chinense and Eucalyptus pulverulenta.

   

3,5-dihydroxy-1,2-dimethoxy-9h-xanthen-9-one

3,5-dihydroxy-1,2-dimethoxy-9h-xanthen-9-one

C15H12O6 (288.06338519999997)


   

1,7-DIHYDROXY-6-METHOXY-9H-XANTHEN-9-ONE

1,7-DIHYDROXY-6-METHOXY-9H-XANTHEN-9-ONE

C14H10O5 (258.052821)


   

1,3,5-trihydroxy-6,7-dimethoxy-9h-xanthen-9-one

1,3,5-trihydroxy-6,7-dimethoxy-9h-xanthen-9-one

C15H12O7 (304.05830019999996)


   

1,3,7-trihydroxy-5,6-dimethoxy-9h-xanthen-9-one

1,3,7-trihydroxy-5,6-dimethoxy-9h-xanthen-9-one

C15H12O7 (304.05830019999996)


   

2,7-dihydroxyxanthen-9-one

2,7-dihydroxyxanthen-9-one

C13H8O4 (228.0422568)


   

Euxanthone

Xanthen-9-one, 1,7-dihydroxy- ; 1,7-Dihydroxy-9H-xanthen-9-one; 1,7-Dihydroxyxanthone; DX 1

C13H8O4 (228.0422568)


Euxanthone is a member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1 and 7 and an oxo group at position 9. It has been isolated from Cratoxylum cochinchinense. It has a role as a plant metabolite and a metabolite. It is a member of xanthones and a member of phenols. Euxanthone is a natural product found in Garcinia oblongifolia, Hypericum scabrum, and other organisms with data available. A member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1 and 7 and an oxo group at position 9. It has been isolated from Cratoxylum cochinchinense. Occurs in Mammea americana (mamey), Platonia insignis (bakuri) and Mangifera indica (mango). Euxanthone is found in fruits and mammee apple. Euxanthone is found in fruits. Euxanthone occurs in Mammea americana (mamey), Platonia insignis (bakuri) and Mangifera indica (mango

   

1,3,5,6-Tetrahydroxyxantone

1,3,5,6-TETRAHYDROXY-9H-XANTHEN-9-ONE

C13H8O6 (260.0320868)


1,3,5,6-Tetrahydroxyxanthone is a natural product found in Hypericum scabrum, Hypericum androsaemum, and other organisms with data available.

   

Mangostin

9H-Xanthen-9-one, 1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methyl-2-butenyl)- (9CI)

C24H26O6 (410.17292960000003)


relative retention time with respect to 9-anthracene Carboxylic Acid is 1.514 relative retention time with respect to 9-anthracene Carboxylic Acid is 1.515 alpha-Mangostin (α-Mangostin) is a dietary xanthone with broad biological activities, such as antioxidant, anti-allergic, antiviral, antibacterial, anti-inflammatory and anticancer effects. It is an inhibitor of mutant IDH1 (IDH1-R132H) with a Ki of 2.85 μM. alpha-Mangostin (α-Mangostin) is a dietary xanthone with broad biological activities, such as antioxidant, anti-allergic, antiviral, antibacterial, anti-inflammatory and anticancer effects. It is an inhibitor of mutant IDH1 (IDH1-R132H) with a Ki of 2.85 μM.

   

δ-Tocotrienol

NCGC00253541-03_C27H40O2_(2R)-2,8-Dimethyl-2-[(3E,7E)-4,8,12-trimethyl-3,7,11-tridecatrien-1-yl]-6-chromanol

C27H40O2 (396.302814)


A tocotrienol that is chroman-6-ol substituted by methyl groups at positions 2 and 8 and a farnesyl chain at position 2.

   

1,6-dihydroxy-5-methoxyxanthen-9-one

NCGC00385584-01!1,6-dihydroxy-5-methoxyxanthen-9-one

C14H10O5 (258.052821)


   
   

caryophyllene

(-)-beta-Caryophyllene

C15H24 (204.18779039999998)


A beta-caryophyllene in which the stereocentre adjacent to the exocyclic double bond has S configuration while the remaining stereocentre has R configuration. It is the most commonly occurring form of beta-caryophyllene, occurring in many essential oils, particularly oil of cloves. D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D002491 - Central Nervous System Agents > D000700 - Analgesics D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents β-Caryophyllene is a CB2 receptor agonist. β-Caryophyllene is a CB2 receptor agonist.

   

garcinone B

6,8,12-trihydroxy-2,2-dimethyl-7-(3-methylbut-2-en-1-yl)-2,5-dihydro-1,10-dioxatetraphen-5-one

C23H22O6 (394.1416312)


   

garcinone D

1,3,6-TRIHYDROXY-8-(3-HYDROXY-3-METHYLBUTYL)-7-METHOXY-2-(3-METHYLBUT-2-EN-1-YL)-9H-XANTHEN-9-ONE

C24H28O7 (428.1834938)


   

beta-Sitosterol 3-O-beta-D-galactopyranoside

2-{[14-(5-ethyl-6-methylheptan-2-yl)-2,15-dimethyltetracyclo[8.7.0.0^{2,7}.0^{11,15}]heptadec-7-en-5-yl]oxy}-6-(hydroxymethyl)oxane-3,4,5-triol

C35H60O6 (576.4389659999999)


   

Normangostin

1,3,6,7-Tetrahydroxy-2,8-bis(3-methyl-2-butenyl)-9H-xanthen-9-one, 9CI

C23H24O6 (396.1572804)


Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptors antagonist, purified from the fruit hull of the medicinal plant Garcinia mangostana. Gamma-Mangostin is a inhibitor of Transthyretin (TTR) fibrillization, it binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM) [1]. Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptor antagonist and potent epoxidase 2 (COX-2) inhibitor, as well as a transthyroxin protein (TTR) profibrosis inhibitor. Gamma-Mangostin binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM). Gamma-Mangostin has anti-inflammatory, antibacterial, antioxidant and anticancer activities, and can be used in the study of metabolic disorders such as diabetes[1][2][3][4][5]. Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptors antagonist, purified from the fruit hull of the medicinal plant Garcinia mangostana. Gamma-Mangostin is a inhibitor of Transthyretin (TTR) fibrillization, it binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer[2]. Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM) [1].

   

β-Mangostin

1,6-DIHYDROXY-3,7-DIMETHOXY-2,8-BIS(3-METHYLBUT-2-EN-1-YL)-9H-XANTHEN-9-ONE

C25H28O6 (424.1885788)


beta-Mangostin (β-Mangostin) is a xanthone compound present in Cratoxylum arborescens, with antibacterial and antimalarial activities. beta-Mangostin exhibits antimycobacterial activity against Mycobacterium tuberculosis with an MIC of 6.25 μg/mL. beta-Mangostin possesses in vitro antimalarial activity against Plasmodium falciparum, with an IC50 of 3.00 μg/mL. beta-Mangostin has potent anticancer activity against various cancers (such as hepatocellular carcinoma, leukaemic)[1][2][3][4]. beta-Mangostin (β-Mangostin) is a xanthone compound present in Cratoxylum arborescens, with antibacterial and antimalarial activities. beta-Mangostin exhibits antimycobacterial activity against Mycobacterium tuberculosis with an MIC of 6.25 μg/mL. beta-Mangostin possesses in vitro antimalarial activity against Plasmodium falciparum, with an IC50 of 3.00 μg/mL. beta-Mangostin has potent anticancer activity against various cancers (such as hepatocellular carcinoma, leukaemic)[1][2][3][4].

   

1,3,6-Trihydroxy-5-methoxyxanthone

1,3,6-Trihydroxy-5-methoxy-9H-xanthen-9-one

C14H10O6 (274.047736)


   

3-Isomangostin Hydrate

5,9-dihydroxy-7-(3-hydroxy-3-methylbutyl)-8-methoxy-2,2-dimethyl-2,3,4,6-tetrahydro-1,11-dioxatetracen-6-one

C24H28O7 (428.1834938)


   

ST 29:1;O;Hex

stigmast-5-en-3beta-yl beta-D-galactopyranoside

C35H60O6 (576.4389659999999)


   

Cochinensoxanthone

Cochinensoxanthone

C28H32O6 (464.2198772)


A member of the class of pyranoxanthones that is 3,4-dihydro-2H,12H-pyrano[2,3-a]xanthen-12-one substituted by hydroxy groups at positions 3, 5 and 10, geminal methyl groups at position 2 and a (2E)-3,7-dimethylocta-2,6-dien-1-yl group at position 6. It has been isolated from the stems of Cratoxylum cochinchinense.

   

Cochinchinone G

Cochinchinone G

C23H24O5 (380.1623654)


A member of the class of xanthones that is 9H-xanthene substituted by hydroxy group at positions 1 and 7, an oxo group at position 9 and a geranyloxy group at position 3. It has been isolated from the stems of Cratoxylum cochinchinense.

   

α-Pinene

InChI=1\C10H16\c1-7-4-5-8-6-9(7)10(8,2)3\h4,8-9H,5-6H2,1-3H

C10H16 (136.1251936)


A pinene that is bicyclo[3.1.1]hept-2-ene substituted by methyl groups at positions 2, 6 and 6 respectively. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1]. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1]. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1]. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1]. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1]. (-)-α-Pinene is a monoterpene and shows sleep enhancing property through a direct binding to GABAA-benzodiazepine (BZD) receptors by acting as a partial modulator at the BZD binding site[1].

   

Mairin

(1R,3aS,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-9-Hydroxy-1-isopropenyl-5a,5b,8,8,11a-pentamethyl-eicosahydro-cyclopenta[a]chrysene-3a-carboxylic acid

C30H48O3 (456.36032579999994)


C308 - Immunotherapeutic Agent > C2139 - Immunostimulant Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4]. Betulinic acid is a natural pentacyclic triterpenoid, acts as a eukaryotic topoisomerase I inhibitor, with an IC50 of 5 μM, and possesses anti-HIV, anti-malarial, anti-inflammatory and anti-tumor properties[1][2][3][4].

   

Gentisein

9H-Xanthen-9-one, 1,3,7-trihydroxy-

C13H8O5 (244.0371718)


Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2]. Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2]. Gentisein (NSC 329491), the major metabolite of Mangiferin, shows the most potent serotonin uptake inhibition with an IC50 value of 4.7 μM[1][2].

   

Euxanthone

9H-Xanthen-9-one, 1,7-dihydroxy-

C13H8O4 (228.0422568)


A natural product found in Cratoxylum cochinchinense.

   

Caryophyllene oxide

Caryophyllene alpha-oxide

C15H24O (220.18270539999997)


Constituent of oil of cloves (Eugenia caryophyllata)and is) also in oils of Betula alba, Mentha piperita (peppermint) and others. Caryophyllene alpha-oxide is found in many foods, some of which are spearmint, cloves, ceylon cinnamon, and herbs and spices. Caryophyllene beta-oxide is a member of the class of compounds known as sesquiterpenoids. Sesquiterpenoids are terpenes with three consecutive isoprene units. Caryophyllene beta-oxide is practically insoluble (in water) and an extremely weak basic (essentially neutral) compound (based on its pKa). Within the cell, caryophyllene beta-oxide is primarily located in the membrane (predicted from logP). It can also be found in the extracellular space. Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1]. Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1].

   

Cochinchinone A

Cochinchinone A

C28H32O5 (448.2249622)


A natural product found in Cratoxylum cochinchinense. A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 1, 3 and 7, a prenyl group at position 2 and a geranyl group at position 4. Isolated from Cratoxylum cochinchinense, it exhibits cytotoxic and antioxidant activities.

   

Cochinchinone B

Cochinchinone B

C28H32O6 (464.2198772)


A member of the class of xanthones that is 9H-xanthen-9-one substituted by hydroxy groups at positions 1, 3, 6 and 7, a prenyl group at position 2 and a geranyl group at position 5. Isolated from Cratoxylum cochinchinense, it exhibits antioxidant activity.

   

Cochinchinoxanthone

Cochinchinoxanthone

C23H24O6 (396.1572804)


A polycyclic cage xanthone isolated from the stems of Cratoxylum cochinchinense and has been shown to exhibit cytotoxic activity against human colon cancer cell line.

   

Biyouyanagin A

Biyouyanagin A

C31H38O4 (474.2769948)


A natural product found in Hypericum chinense var salicifolium.

   

hyperione A, (rel)-

hyperione A, (rel)-

C19H16O6 (340.0946836)


A natural product found in Hypericum chinense.

   

epoxide

[1R-(1R*,4R*,6R*,10S*)]- Caryophylene oxide Caryophyllene epoxide Caryophyllene oxyde Epoxycaryophyllene [1R-(1R*,4R*,6R*,10S*)]-4,12,12-trimethyl-9-methylene-5-oxatricyclo[8.2.0.04,6]dodecane <>-Caryophyllene epoxide <>-Caryophyllene oxide

C15H24O (220.18270539999997)


Caryophyllene oxide is an epoxide. It has a role as a metabolite. Caryophyllene oxide is a natural product found in Xylopia emarginata, Eupatorium altissimum, and other organisms with data available. See also: Cannabis sativa subsp. indica top (part of). A natural product found in Cupania cinerea. Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1]. Caryophyllene oxide, isolated from from Hymenaea courbaril, possesses analgesic and anti-inflammatory activity[1].

   

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,6,7-tetrahydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,6,7-tetrahydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

C28H32O6 (464.2198772)


   

1,5,6-trihydroxy-3-methoxyxanthen-9-one

1,5,6-trihydroxy-3-methoxyxanthen-9-one

C14H10O6 (274.047736)


   

4-ethenyl-4,11'-dimethyl-8'-(6-methylhept-5-en-2-yl)-2'-phenyl-3'-oxaspiro[oxolane-3,4'-tricyclo[5.4.0.0²,⁶]undecan]-10'-ene-2,5'-dione

4-ethenyl-4,11'-dimethyl-8'-(6-methylhept-5-en-2-yl)-2'-phenyl-3'-oxaspiro[oxolane-3,4'-tricyclo[5.4.0.0²,⁶]undecan]-10'-ene-2,5'-dione

C31H38O4 (474.2769948)


   

(3r)-3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-2-en-1-yl)-2,4-dihydroanthracen-1-one

(3r)-3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-2-en-1-yl)-2,4-dihydroanthracen-1-one

C21H24O5 (356.1623654)


   

8-hydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

8-hydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

C24H26O6 (410.17292960000003)


   

1-(3,7-dimethylocta-2,6-dien-1-yl)-3,8-dihydroxy-1,5,5-tris(3-methylbut-2-en-1-yl)xanthene-2,6,9-trione

1-(3,7-dimethylocta-2,6-dien-1-yl)-3,8-dihydroxy-1,5,5-tris(3-methylbut-2-en-1-yl)xanthene-2,6,9-trione

C38H48O6 (600.3450708)


   

1,5-dihydroxy-6,7-dimethoxyxanthen-9-one

1,5-dihydroxy-6,7-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

(3r,4r)-4-ethenyl-3-[(2z)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

(3r,4r)-4-ethenyl-3-[(2z)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

C16H16O4 (272.1048536)


   

1,3,7-trihydroxy-2-[(2r)-2-hydroxy-3-methylbut-3-en-1-yl]-4-(3-methylbut-2-en-1-yl)xanthen-9-one

1,3,7-trihydroxy-2-[(2r)-2-hydroxy-3-methylbut-3-en-1-yl]-4-(3-methylbut-2-en-1-yl)xanthen-9-one

C23H24O6 (396.1572804)


   

4-[4,8-dihydroxy-2-(2-hydroxypropan-2-yl)-7-methoxy-6-(3-methylbut-2-en-1-yl)-5-oxo-2h,3h-furo[3,2-b]xanthen-3-yl]-1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methylbut-2-en-1-yl)xanthen-9-one

4-[4,8-dihydroxy-2-(2-hydroxypropan-2-yl)-7-methoxy-6-(3-methylbut-2-en-1-yl)-5-oxo-2h,3h-furo[3,2-b]xanthen-3-yl]-1,3,6-trihydroxy-7-methoxy-2,8-bis(3-methylbut-2-en-1-yl)xanthen-9-one

C48H50O13 (834.325125)


   

1,3-dihydroxy-7-{[(2e,6r)-6-hydroxy-3,7-dimethylocta-2,7-dien-1-yl]oxy}xanthen-9-one

1,3-dihydroxy-7-{[(2e,6r)-6-hydroxy-3,7-dimethylocta-2,7-dien-1-yl]oxy}xanthen-9-one

C23H24O6 (396.1572804)


   

4,5-dihydroxy-2,3-dimethoxyxanthen-9-one

4,5-dihydroxy-2,3-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

4-ethenyl-3-(3-hydroxy-3-phenylprop-2-enoyl)-4-methyloxolan-2-one

4-ethenyl-3-(3-hydroxy-3-phenylprop-2-enoyl)-4-methyloxolan-2-one

C16H16O4 (272.1048536)


   

(2r,3r)-3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

(2r,3r)-3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C25H22O9 (466.1263762)


   

4,8-dihydroxy-2,3-dimethoxy-1-(3-methylbut-2-en-1-yl)xanthen-9-one

4,8-dihydroxy-2,3-dimethoxy-1-(3-methylbut-2-en-1-yl)xanthen-9-one

C20H20O6 (356.125982)


   

(1s)-1-[(2e)-3,7-dimethylocta-2,6-dien-1-yl]-3,8-dihydroxy-6-methoxy-1,5-bis(3-methylbut-2-en-1-yl)xanthene-2,9-dione

(1s)-1-[(2e)-3,7-dimethylocta-2,6-dien-1-yl]-3,8-dihydroxy-6-methoxy-1,5-bis(3-methylbut-2-en-1-yl)xanthene-2,9-dione

C34H42O6 (546.2981232)


   

8-hydroxy-1,2,3-trimethoxyxanthen-9-one

8-hydroxy-1,2,3-trimethoxyxanthen-9-one

C16H14O6 (302.0790344)


   

1,3,7-trihydroxy-5-methoxyxanthen-9-one

1,3,7-trihydroxy-5-methoxyxanthen-9-one

C14H10O6 (274.047736)


   

7-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,3-dihydroxyxanthen-9-one

7-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,3-dihydroxyxanthen-9-one

C23H24O5 (380.1623654)


   
   

1,3,7-trihydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

1,3,7-trihydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

C18H16O5 (312.0997686)


   

5-[6-hydroxy-2,7,8-trimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-3,4-dihydro-1-benzopyran-5-yl]-2,7,8-trimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-3,4-dihydro-1-benzopyran-6-ol

5-[6-hydroxy-2,7,8-trimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-3,4-dihydro-1-benzopyran-5-yl]-2,7,8-trimethyl-2-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-3,4-dihydro-1-benzopyran-6-ol

C56H82O4 (818.6212772)


   

(3r,4s)-4-ethenyl-3-[(1r)-1-hydroxy-3-oxo-3-phenylpropyl]-4-methyloxolan-2-one

(3r,4s)-4-ethenyl-3-[(1r)-1-hydroxy-3-oxo-3-phenylpropyl]-4-methyloxolan-2-one

C16H18O4 (274.1205028)


   

3-[(3,7-dimethyl-6-oxoocta-2,7-dien-1-yl)oxy]-1,7-dihydroxyxanthen-9-one

3-[(3,7-dimethyl-6-oxoocta-2,7-dien-1-yl)oxy]-1,7-dihydroxyxanthen-9-one

C23H22O6 (394.1416312)


   

7-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-3-hydroxy-9-oxoxanthen-1-yl acetate

7-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-3-hydroxy-9-oxoxanthen-1-yl acetate

C25H26O6 (422.17292960000003)


   

3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-2-en-1-yl)-2,4-dihydroanthracen-1-one

3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-2-en-1-yl)-2,4-dihydroanthracen-1-one

C21H24O5 (356.1623654)


   

(2r)-8,11-dihydroxy-2-methyl-12-(3-methylbut-2-en-1-yl)-2-(4-methylpent-3-en-1-yl)-1,5-dioxatetraphen-10-one

(2r)-8,11-dihydroxy-2-methyl-12-(3-methylbut-2-en-1-yl)-2-(4-methylpent-3-en-1-yl)-1,5-dioxatetraphen-10-one

C28H30O5 (446.209313)


   

1,3-dihydroxy-7-{[(2e,5e)-7-hydroxy-3,7-dimethylocta-2,5-dien-1-yl]oxy}xanthen-9-one

1,3-dihydroxy-7-{[(2e,5e)-7-hydroxy-3,7-dimethylocta-2,5-dien-1-yl]oxy}xanthen-9-one

C23H24O6 (396.1572804)


   

3,4-dihydroxy-2-methoxyxanthen-9-one

3,4-dihydroxy-2-methoxyxanthen-9-one

C14H10O5 (258.052821)


   

(1s,5s,6r,7s)-3-benzoyl-4-hydroxy-6-methyl-1,7-bis(3-methylbut-2-en-1-yl)-6-(4-methylpent-3-en-1-yl)bicyclo[3.3.1]non-3-ene-2,9-dione

(1s,5s,6r,7s)-3-benzoyl-4-hydroxy-6-methyl-1,7-bis(3-methylbut-2-en-1-yl)-6-(4-methylpent-3-en-1-yl)bicyclo[3.3.1]non-3-ene-2,9-dione

C33H42O4 (502.30829320000004)


   

9α-hydroxysophoramine

9alpha-hydroxysophoramine

C15H20N2O2 (260.15247)


{"Ingredient_id": "HBIN014056","Ingredient_name": "9\u03b1-hydroxysophoramine","Alias": "9alpha-hydroxysophoramine","Ingredient_formula": "C15H20N2O2","Ingredient_Smile": "C1CC2CN3C(=O)C=CC=C3C4C2N(C1)CC(C4)O","Ingredient_weight": "NA","OB_score": "NA","CAS_id": "NA","SymMap_id": "SMIT15914","TCMID_id": "31272;10713","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "NA","DrugBank_id": "NA"}

   

6,12-dihydroxy-8-methoxy-2,2-dimethyl-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-1,10-dioxatetraphen-5-one

6,12-dihydroxy-8-methoxy-2,2-dimethyl-7-(3-methylbut-2-en-1-yl)-3,4-dihydro-1,10-dioxatetraphen-5-one

C24H26O6 (410.17292960000003)


   

4,11,11-trimethyl-8-methylidenebicyclo[7.2.0]undec-3-en-5-ol

4,11,11-trimethyl-8-methylidenebicyclo[7.2.0]undec-3-en-5-ol

C15H24O (220.18270539999997)


   

9-ethenyl-9-methyl-2-phenyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

9-ethenyl-9-methyl-2-phenyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C16H14O4 (270.0892044)


   

3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C25H22O9 (466.1263762)


   

2-hydroxy-9-xanthenone

2-hydroxy-9-xanthenone

C13H8O3 (212.0473418)


   

1-(3,3-dimethylbutyl)-3,6,8-trihydroxy-2-methoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

1-(3,3-dimethylbutyl)-3,6,8-trihydroxy-2-methoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

C25H30O6 (426.204228)


   

(2r,3s)-7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

(2r,3s)-7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C23H18O9 (438.0950778)


   

3,7-dihydroxy-2,4-dimethoxyxanthen-9-one

3,7-dihydroxy-2,4-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

2-hydroxy-5-methoxyxanthen-9-one

2-hydroxy-5-methoxyxanthen-9-one

C14H10O4 (242.057906)


   

2h-[1,3]dioxolo[4,5-b]xanthen-10-one

2h-[1,3]dioxolo[4,5-b]xanthen-10-one

C14H8O4 (240.0422568)


   

2-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxy-4-(3-methylbut-2-en-1-yl)xanthen-9-one

2-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxy-4-(3-methylbut-2-en-1-yl)xanthen-9-one

C28H32O5 (448.2249622)


   

5-[4-(2h-1,3-benzodioxole-5-carbonyl)oxolan-2-yl]-2h-1,3-benzodioxole

5-[4-(2h-1,3-benzodioxole-5-carbonyl)oxolan-2-yl]-2h-1,3-benzodioxole

C19H16O6 (340.0946836)


   

[2-(2h-1,3-benzodioxol-5-yl)-4-(2h-1,3-benzodioxol-5-ylmethyl)oxolan-3-yl]methanol

[2-(2h-1,3-benzodioxol-5-yl)-4-(2h-1,3-benzodioxol-5-ylmethyl)oxolan-3-yl]methanol

C20H20O6 (356.125982)


   

9-ethenyl-9-methyl-2-(sec-butyl)-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

9-ethenyl-9-methyl-2-(sec-butyl)-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C14H18O4 (250.1205028)


   

1-[3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-3-methylbutan-1-one

1-[3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-3-methylbutan-1-one

C32H32O9 (560.2046222)


   

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxy-2-(3-methylbut-2-en-1-yl)xanthen-9-one

C28H32O5 (448.2249622)


   

(1s,2s,8r,9r)-4,4,8-trimethyltricyclo[6.3.1.0¹,⁵]dodecane-2,9-diol

(1s,2s,8r,9r)-4,4,8-trimethyltricyclo[6.3.1.0¹,⁵]dodecane-2,9-diol

C15H26O2 (238.1932696)


   

(4s)-4-ethenyl-3-hydroxy-3-[(2z)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

(4s)-4-ethenyl-3-hydroxy-3-[(2z)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

C16H16O5 (288.0997686)


   

(1r,2s,5s,8r,9r)-4,4,8-trimethyltricyclo[6.3.1.0¹,⁵]dodecane-2,9-diol

(1r,2s,5s,8r,9r)-4,4,8-trimethyltricyclo[6.3.1.0¹,⁵]dodecane-2,9-diol

C15H26O2 (238.1932696)


   

3-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,8-dihydroxy-6-methylanthracene-9,10-dione

3-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,8-dihydroxy-6-methylanthracene-9,10-dione

C25H26O5 (406.17801460000004)


   

1-[(3r,5s,7s)-3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-3-methylbutan-1-one

1-[(3r,5s,7s)-3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-3-methylbutan-1-one

C32H32O9 (560.2046222)


   
   

3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

3-ethyl-7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C24H20O8 (436.115812)


   

(5s,9s)-2-[(2s)-butan-2-yl]-9-ethenyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

(5s,9s)-2-[(2s)-butan-2-yl]-9-ethenyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C14H18O4 (250.1205028)


   

(4r,5s,6r)-5,6-dihydroxy-4-isopropyl-6-methyl-2,3,4,5,7,8-hexahydronaphthalen-1-one

(4r,5s,6r)-5,6-dihydroxy-4-isopropyl-6-methyl-2,3,4,5,7,8-hexahydronaphthalen-1-one

C14H22O3 (238.1568862)


   

(5r,9s)-9-ethenyl-2-isopropyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

(5r,9s)-9-ethenyl-2-isopropyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C13H16O4 (236.10485359999998)


   

[(2s,3r,4s)-2-(2h-1,3-benzodioxol-5-yl)-4-(2h-1,3-benzodioxol-5-ylmethyl)oxolan-3-yl]methanol

[(2s,3r,4s)-2-(2h-1,3-benzodioxol-5-yl)-4-(2h-1,3-benzodioxol-5-ylmethyl)oxolan-3-yl]methanol

C20H20O6 (356.125982)


   

(2r,3r)-4-hydroxy-2,3-bis[(4-hydroxy-3-methoxyphenyl)methyl]butyl (2e)-3-(4-hydroxy-3-methoxyphenyl)prop-2-enoate

(2r,3r)-4-hydroxy-2,3-bis[(4-hydroxy-3-methoxyphenyl)methyl]butyl (2e)-3-(4-hydroxy-3-methoxyphenyl)prop-2-enoate

C30H34O9 (538.2202714)


   

(2s)-5,9,10-trihydroxy-2-methyl-12-(2-methylbut-3-en-2-yl)-2-(4-methylpent-3-en-1-yl)-1,11-dioxatetracen-6-one

(2s)-5,9,10-trihydroxy-2-methyl-12-(2-methylbut-3-en-2-yl)-2-(4-methylpent-3-en-1-yl)-1,11-dioxatetracen-6-one

C28H30O6 (462.204228)


   

5,9,10-trihydroxy-2-methyl-12-(2-methylbut-3-en-2-yl)-2-(4-methylpent-3-en-1-yl)-1,11-dioxatetracen-6-one

5,9,10-trihydroxy-2-methyl-12-(2-methylbut-3-en-2-yl)-2-(4-methylpent-3-en-1-yl)-1,11-dioxatetracen-6-one

C28H30O6 (462.204228)


   

1,3,5-trihydroxy-6-methoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

1,3,5-trihydroxy-6-methoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

C19H18O6 (342.11033280000004)


   

9-ethenyl-2-isopropyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

9-ethenyl-2-isopropyl-9-methyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C13H16O4 (236.10485359999998)


   

1-hydroxy-5,6-dimethoxyxanthen-9-one

1-hydroxy-5,6-dimethoxyxanthen-9-one

C15H12O5 (272.0684702)


   

(2r,3r)-12-hydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

(2r,3r)-12-hydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C24H20O9 (452.110727)


   

(1s,2s,13r)-8-hydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

(1s,2s,13r)-8-hydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

C24H26O6 (410.17292960000003)


   

12-hydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

12-hydroxy-2-(4-hydroxy-3,5-dimethoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C24H20O9 (452.110727)


   

3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-3-en-1-yl)-2,4-dihydroanthracen-1-one

3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-3-en-1-yl)-2,4-dihydroanthracen-1-one

C21H24O5 (356.1623654)


   

1,1,4a-trimethyl-6-methylidene-5-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-hexahydro-2h-naphthalen-2-ol

1,1,4a-trimethyl-6-methylidene-5-(4,8,12-trimethyltrideca-3,7,11-trien-1-yl)-hexahydro-2h-naphthalen-2-ol

C30H50O (426.386145)


   

(3s)-6-(3,7-dimethylocta-2,6-dien-1-yl)-3,5,10-trihydroxy-2,2-dimethyl-3,4-dihydro-1,7-dioxatetraphen-12-one

(3s)-6-(3,7-dimethylocta-2,6-dien-1-yl)-3,5,10-trihydroxy-2,2-dimethyl-3,4-dihydro-1,7-dioxatetraphen-12-one

C28H32O6 (464.2198772)


   

(2r)-5-{[(2s)-2,8-dimethyl-2-[(3e,7e)-4,8,12-trimethyltrideca-3,7,11-trien-1-yl]-3,4-dihydro-1-benzopyran-6-yl]oxy}-2,8-dimethyl-2-[(3e,7e)-4,8,12-trimethyltrideca-3,7,11-trien-1-yl]-3,4-dihydro-1-benzopyran-6-ol

(2r)-5-{[(2s)-2,8-dimethyl-2-[(3e,7e)-4,8,12-trimethyltrideca-3,7,11-trien-1-yl]-3,4-dihydro-1-benzopyran-6-yl]oxy}-2,8-dimethyl-2-[(3e,7e)-4,8,12-trimethyltrideca-3,7,11-trien-1-yl]-3,4-dihydro-1-benzopyran-6-ol

C54H78O4 (790.5899787999999)


   

1,3,7-trihydroxy-2,4-bis(3-methylbut-2-en-1-yl)xanthen-9-one

1,3,7-trihydroxy-2,4-bis(3-methylbut-2-en-1-yl)xanthen-9-one

C23H24O5 (380.1623654)


   

(2r)-4,7-dihydroxy-2-(2-hydroxypropan-2-yl)-2h,3h-furo[3,2-b]xanthen-5-one

(2r)-4,7-dihydroxy-2-(2-hydroxypropan-2-yl)-2h,3h-furo[3,2-b]xanthen-5-one

C18H16O6 (328.0946836)


   

3-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,7-dihydroxyxanthen-9-one

3-[(3,7-dimethylocta-2,6-dien-1-yl)oxy]-1,7-dihydroxyxanthen-9-one

C23H24O5 (380.1623654)


   

(2r,3r)-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-12-methoxy-2,3-dihydro-1,4,5-trioxatetraphen-10-one

(2r,3r)-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-12-methoxy-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C24H20O8 (436.115812)


   

7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

7,9-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C23H18O9 (438.0950778)


   

6,8-dihydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

6,8-dihydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

C24H26O7 (426.1678446)


   

5,6-dihydroxy-4-isopropyl-6-methyl-2,3,4,5,7,8-hexahydronaphthalen-1-one

5,6-dihydroxy-4-isopropyl-6-methyl-2,3,4,5,7,8-hexahydronaphthalen-1-one

C14H22O3 (238.1568862)


   

5-[(2r,4s)-4-(2h-1,3-benzodioxole-5-carbonyl)oxolan-2-yl]-2h-1,3-benzodioxole

5-[(2r,4s)-4-(2h-1,3-benzodioxole-5-carbonyl)oxolan-2-yl]-2h-1,3-benzodioxole

C19H16O6 (340.0946836)


   

1-(3,7-dimethylocta-2,6-dien-1-yl)-3,6,8-trihydroxy-1,5-bis(3-methylbut-2-en-1-yl)xanthene-2,9-dione

1-(3,7-dimethylocta-2,6-dien-1-yl)-3,6,8-trihydroxy-1,5-bis(3-methylbut-2-en-1-yl)xanthene-2,9-dione

C33H40O6 (532.2824740000001)


   
   

(1r,6s,9s,10r,13r)-3-benzoyl-6-(2-hydroxypropan-2-yl)-9-methyl-1,13-bis(3-methylbut-2-en-1-yl)-5-oxatricyclo[7.2.2.0⁴,¹⁰]tridec-3-ene-2,11-dione

(1r,6s,9s,10r,13r)-3-benzoyl-6-(2-hydroxypropan-2-yl)-9-methyl-1,13-bis(3-methylbut-2-en-1-yl)-5-oxatricyclo[7.2.2.0⁴,¹⁰]tridec-3-ene-2,11-dione

C33H42O5 (518.3032082)


   

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxyxanthen-9-one

4-(3,7-dimethylocta-2,6-dien-1-yl)-1,3,7-trihydroxyxanthen-9-one

C23H24O5 (380.1623654)


   

methyl (3r,3'r,3'as,5s,7's,7'ar)-3',5,7'-trihydroxy-3,3',7'-trimethyl-3-(3-methylbut-2-en-1-yl)-2,4-dioxo-hexahydrospiro[cyclopentane-1,5'-indene]-5-carboxylate

methyl (3r,3'r,3'as,5s,7's,7'ar)-3',5,7'-trihydroxy-3,3',7'-trimethyl-3-(3-methylbut-2-en-1-yl)-2,4-dioxo-hexahydrospiro[cyclopentane-1,5'-indene]-5-carboxylate

C23H34O7 (422.2304414)


   

4,6-dihydroxy-2,3-dimethoxyxanthen-9-one

4,6-dihydroxy-2,3-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

3,6-dihydroxy-1,2-dimethoxyxanthen-9-one

3,6-dihydroxy-1,2-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

1,3,5,6-tetrahydroxy-4-[5-methyl-2-(prop-1-en-2-yl)hex-4-en-1-yl]-2-(3-methylbut-2-en-1-yl)xanthen-9-one

1,3,5,6-tetrahydroxy-4-[5-methyl-2-(prop-1-en-2-yl)hex-4-en-1-yl]-2-(3-methylbut-2-en-1-yl)xanthen-9-one

C28H32O6 (464.2198772)


   
   

2-hydroxy-1-methoxyxanthen-9-one

2-hydroxy-1-methoxyxanthen-9-one

C14H10O4 (242.057906)


   

(5s,9s)-9-ethenyl-9-methyl-2-phenyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

(5s,9s)-9-ethenyl-9-methyl-2-phenyl-1,7-dioxaspiro[4.4]non-2-ene-4,6-dione

C16H14O4 (270.0892044)


   

(1r,3'r,3'as,5r,7's,7'as)-2,3',7'-trihydroxy-3',5,7'-trimethyl-5-(3-methylbut-2-en-1-yl)-3-[(2s)-2-methylbutanoyl]-1',2',3'a,4',6',7'a-hexahydrospiro[cyclohexane-1,5'-inden]-2-ene-4,6-dione

(1r,3'r,3'as,5r,7's,7'as)-2,3',7'-trihydroxy-3',5,7'-trimethyl-5-(3-methylbut-2-en-1-yl)-3-[(2s)-2-methylbutanoyl]-1',2',3'a,4',6',7'a-hexahydrospiro[cyclohexane-1,5'-inden]-2-ene-4,6-dione

C27H40O6 (460.28247400000004)


   

9-hydroxy-5a,5b,8,8,11a-pentamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysene-3a-carboxylic acid

9-hydroxy-5a,5b,8,8,11a-pentamethyl-1-(prop-1-en-2-yl)-hexadecahydrocyclopenta[a]chrysene-3a-carboxylic acid

C30H48O3 (456.36032579999994)


   

2,5-dihydroxyxanthen-9-one

2,5-dihydroxyxanthen-9-one

C13H8O4 (228.0422568)


   

1,3-dihydroxy-5,6-dimethoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

1,3-dihydroxy-5,6-dimethoxy-7-(3-methylbut-2-en-1-yl)xanthen-9-one

C20H20O6 (356.125982)


   

7-[(3,7-dimethyl-6-oxoocta-2,7-dien-1-yl)oxy]-1,3-dihydroxyxanthen-9-one

7-[(3,7-dimethyl-6-oxoocta-2,7-dien-1-yl)oxy]-1,3-dihydroxyxanthen-9-one

C23H22O6 (394.1416312)


   

(1'r,2'r,3r,4r,6's,7'r,8'r)-4-ethenyl-4,11'-dimethyl-8'-(6-methylhept-5-en-2-yl)-2'-phenyl-3'-oxaspiro[oxolane-3,4'-tricyclo[5.4.0.0²,⁶]undecan]-10'-ene-2,5'-dione

(1'r,2'r,3r,4r,6's,7'r,8'r)-4-ethenyl-4,11'-dimethyl-8'-(6-methylhept-5-en-2-yl)-2'-phenyl-3'-oxaspiro[oxolane-3,4'-tricyclo[5.4.0.0²,⁶]undecan]-10'-ene-2,5'-dione

C31H38O4 (474.2769948)


   

12-[(2e)-3,7-dimethylocta-2,6-dien-1-yl]-5,8-dihydroxy-2,2-dimethyl-1,11-dioxatetracen-6-one

12-[(2e)-3,7-dimethylocta-2,6-dien-1-yl]-5,8-dihydroxy-2,2-dimethyl-1,11-dioxatetracen-6-one

C28H30O5 (446.209313)


   

(3s)-3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-3-en-1-yl)-2,4-dihydroanthracen-1-one

(3s)-3,8,9-trihydroxy-6-methoxy-3-methyl-7-(3-methylbut-3-en-1-yl)-2,4-dihydroanthracen-1-one

C21H24O5 (356.1623654)


   

(2r,3r)-12-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

(2r,3r)-12-hydroxy-2-(4-hydroxy-3-methoxyphenyl)-3-(hydroxymethyl)-2,3-dihydro-1,4,5-trioxatetraphen-10-one

C23H18O8 (422.10016279999996)


   

4,7-dihydroxy-2,3-dimethoxyxanthen-9-one

4,7-dihydroxy-2,3-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

6,8-dihydroxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

6,8-dihydroxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

C23H24O6 (396.1572804)


   

7-{[(2e)-3,7-dimethyl-6-oxoocta-2,7-dien-1-yl]oxy}-1,3-dihydroxyxanthen-9-one

7-{[(2e)-3,7-dimethyl-6-oxoocta-2,7-dien-1-yl]oxy}-1,3-dihydroxyxanthen-9-one

C23H22O6 (394.1416312)


   

1,3-dihydroxy-7-[(7-hydroxy-3,7-dimethylocta-2,5-dien-1-yl)oxy]xanthen-9-one

1,3-dihydroxy-7-[(7-hydroxy-3,7-dimethylocta-2,5-dien-1-yl)oxy]xanthen-9-one

C23H24O6 (396.1572804)


   

1-[3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-2-methylbutan-1-one

1-[3,5-bis(2h-1,3-benzodioxol-5-yl)-12-hydroxy-10-methoxy-11-methyl-2,4-dioxatricyclo[7.4.0.0³,⁷]trideca-1(9),10,12-trien-13-yl]-2-methylbutan-1-one

C32H32O9 (560.2046222)


   

(1s,2s,13r,15r)-6,8-dihydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

(1s,2s,13r,15r)-6,8-dihydroxy-13-methoxy-17,17-dimethyl-15-(3-methylbut-2-en-1-yl)-3,16-dioxapentacyclo[11.4.1.0²,¹¹.0²,¹⁵.0⁴,⁹]octadeca-4,6,8,11-tetraene-10,14-dione

C24H26O7 (426.1678446)


   

(6r)-3,5-dihydroxy-4-{[(1r,2s,5s)-2-hydroxy-2-methyl-5-(prop-1-en-2-yl)cyclopentyl]methyl}-6-methyl-6-(3-methylbut-2-en-1-yl)-2-(2-methylpropanoyl)cyclohexa-2,4-dien-1-one

(6r)-3,5-dihydroxy-4-{[(1r,2s,5s)-2-hydroxy-2-methyl-5-(prop-1-en-2-yl)cyclopentyl]methyl}-6-methyl-6-(3-methylbut-2-en-1-yl)-2-(2-methylpropanoyl)cyclohexa-2,4-dien-1-one

C26H38O5 (430.2719098)


   

2,6-dihydroxy-3,4-dimethoxyxanthen-9-one

2,6-dihydroxy-3,4-dimethoxyxanthen-9-one

C15H12O6 (288.06338519999997)


   

4-ethenyl-3-[(2e)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

4-ethenyl-3-[(2e)-3-hydroxy-3-phenylprop-2-enoyl]-4-methyloxolan-2-one

C16H16O4 (272.1048536)