NCBI Taxonomy: 36012

Nageia nagi (ncbi_taxid: 36012)

found 99 associated metabolites at species taxonomy rank level.

Ancestor: Nageia

Child Taxonomies: none taxonomy data.

Epicatechin

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

C15H14O6 (290.079)


Epicatechin is an antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. Catechin is a tannin peculiar to green and white tea because the black tea oxidation process reduces catechins in black tea. Catechin is a powerful, water soluble polyphenol and antioxidant that is easily oxidized. Several thousand types are available in the plant world. As many as two thousand are known to have a flavon structure and are called flavonoids. Catechin is one of them. Green tea is manufactured from fresh, unfermented tea leaves; the oxidation of catechins is minimal, and hence they are able to serve as antioxidants. Researchers believe that catechin is effective because it easily sticks to proteins, blocking bacteria from adhering to cell walls and disrupting their ability to destroy them. Viruses have hooks on their surfaces and can attach to cell walls. The catechin in green tea prevents viruses from adhering and causing harm. Catechin reacts with toxins created by harmful bacteria (many of which belong to the protein family) and harmful metals such as lead, mercury, chrome, and cadmium. From its NMR espectra, there is a doubt on 2 and 3 atoms configuration. It seems to be that they are in trans position. Epicatechin, also known as (+)-cyanidanol-3 or 2,3-cis-epicatechin, is a member of the class of compounds known as catechins. Catechins are compounds containing a catechin moiety, which is a 3,4-dihydro-2-chromene-3,5.7-tiol. Thus, epicatechin is considered to be a flavonoid lipid molecule. Epicatechin is practically insoluble (in water) and a very weakly acidic compound (based on its pKa). Epicatechin can be found in cashew nut, which makes epicatechin a potential biomarker for the consumption of this food product. Epicatechin can be found primarily in blood, feces, and urine, as well as throughout most human tissues. Epicatechin is a flavan-3-ol, a type of natural phenol and antioxidant. It is a plant secondary metabolite. It belongs to the group of flavan-3-ols (or simply flavanols), part of the chemical family of flavonoids . (-)-epicatechin is a catechin with (2R,3R)-configuration. It has a role as an antioxidant. It is a polyphenol and a catechin. It is an enantiomer of a (+)-epicatechin. Epicatechin has been used in trials studying the treatment of Pre-diabetes. (-)-Epicatechin is a natural product found in Visnea mocanera, Litsea rotundifolia, and other organisms with data available. An antioxidant flavonoid, occurring especially in woody plants as both (+)-catechin and (-)-epicatechin (cis) forms. See also: Crofelemer (monomer of); Bilberry (part of); Cats Claw (part of) ... View More ... A catechin with (2R,3R)-configuration. [Raw Data] CB030_(-)-Epicatechin_pos_20eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_50eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_40eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_10eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_pos_30eV_CB000016.txt [Raw Data] CB030_(-)-Epicatechin_neg_50eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_30eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_10eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_40eV_000009.txt [Raw Data] CB030_(-)-Epicatechin_neg_20eV_000009.txt Epicatechin. CAS Common Chemistry. CAS, a division of the American Chemical Society, n.d. https://commonchemistry.cas.org/detail?cas_rn=490-46-0 (retrieved 2024-07-09) (CAS RN: 490-46-0). Licensed under the Attribution-Noncommercial 4.0 International License (CC BY-NC 4.0). (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB. (-)-Epicatechin inhibits cyclooxygenase-1 (COX-1) with an IC50 of 3.2 μM. (-)-Epicatechin inhibits the IL-1β-induced expression of iNOS by blocking the nuclear localization of the p65 subunit of NF-κB.

   

beta-Sitosterol

(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-ol

C29H50O (414.3861)


beta-Sitosterol, a main dietary phytosterol found in plants, may have the potential for prevention and therapy for human cancer. Phytosterols are plant sterols found in foods such as oils, nuts, and vegetables. Phytosterols, in the same way as cholesterol, contain a double bond and are susceptible to oxidation, and are characterized by anti-carcinogenic and anti-atherogenic properties (PMID:13129445, 11432711). beta-Sitosterol is a phytopharmacological extract containing a mixture of phytosterols, with smaller amounts of other sterols, bonded with glucosides. These phytosterols are commonly derived from the South African star grass, Hypoxis rooperi, or from species of Pinus and Picea. The purported active constituent is termed beta-sitosterol. Additionally, the quantity of beta-sitosterol-beta-D-glucoside is often reported. Although the exact mechanism of action of beta-sitosterols is unknown, it may be related to cholesterol metabolism or anti-inflammatory effects (via interference with prostaglandin metabolism). Compared with placebo, beta-sitosterol improved urinary symptom scores and flow measures (PMID:10368239). A plant food-based diet modifies the serum beta-sitosterol concentration in hyperandrogenic postmenopausal women. This finding indicates that beta-sitosterol can be used as a biomarker of exposure in observational studies or as a compliance indicator in dietary intervention studies of cancer prevention (PMID:14652381). beta-Sitosterol induces apoptosis and activates key caspases in MDA-MB-231 human breast cancer cells (PMID:12579296). Sitosterol is a member of the class of phytosterols that is stigmast-5-ene substituted by a beta-hydroxy group at position 3. It has a role as a sterol methyltransferase inhibitor, an anticholesteremic drug, an antioxidant, a plant metabolite and a mouse metabolite. It is a 3beta-sterol, a stigmastane sterol, a 3beta-hydroxy-Delta(5)-steroid, a C29-steroid and a member of phytosterols. It derives from a hydride of a stigmastane. Active fraction of Solanum trilobatum; reduces side-effects of radiation-induced toxicity. Beta-Sitosterol is a natural product found in Elodea canadensis, Ophiopogon intermedius, and other organisms with data available. beta-Sitosterol is one of several phytosterols (plant sterols) with chemical structures similar to that of cholesterol. Sitosterols are white, waxy powders with a characteristic odor. They are hydrophobic and soluble in alcohols. beta-Sitosterol is found in many foods, some of which are ginseng, globe artichoke, sesbania flower, and common oregano. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

Vomifoliol

2-Cyclohexen-1-one, 4-hydroxy-4-((1E,3R)-3-hydroxy-1-buten-1-yl)-3,5,5-trimethyl-, (4S)-rel-

C13H20O3 (224.1412)


A fenchane monoterpenoid that is 3,5,5-trimethylcyclohex-2-en-1-one substituted by a hydroxy and a (1E)-3-hydroxybut-1-en-1-yl group at position 4. (6S,9R)-vomifoliol is a (6S)-vomifoliol with a R configuration for the hydroxy group at position 9. It has a role as a phytotoxin and a metabolite. It is an enantiomer of a (6R,9S)-vomifoliol. Vomifoliol is a natural product found in Sida acuta, Macrococculus pomiferus, and other organisms with data available. A (6S)-vomifoliol with a R configuration for the hydroxy group at position 9.

   

Sugiol

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

C20H28O2 (300.2089)


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

   

Myricetin

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

C15H10O8 (318.0376)


Myricetin, also known as cannabiscetin or myricetol, belongs to the class of organic compounds known as flavonols. Flavonols are compounds that contain a flavone (2-phenyl-1-benzopyran-4-one) backbone carrying a hydroxyl group at the 3-position. Thus, myricetin is considered to be a flavonoid lipid molecule. A hexahydroxyflavone that is flavone substituted by hydroxy groups at positions 3, 3, 4, 5, 5 and 7. Myricetin is a very hydrophobic molecule, practically insoluble in water, and relatively neutral. Myricetin is found, on average, in the highest concentration within a few different foods, such as common walnuts, carobs, and fennels and in a lower concentration in welsh onions, yellow bell peppers, and jutes. Myricetin has also been detected, but not quantified in several different foods, such as napa cabbages, sesames, mixed nuts, lichee, and garden cress. Myricetin is a hexahydroxyflavone that is flavone substituted by hydroxy groups at positions 3, 3, 4, 5, 5 and 7. It has been isolated from the leaves of Myrica rubra and other plants. It has a role as a cyclooxygenase 1 inhibitor, an antineoplastic agent, an antioxidant, a plant metabolite, a food component, a hypoglycemic agent and a geroprotector. It is a hexahydroxyflavone and a 7-hydroxyflavonol. It is a conjugate acid of a myricetin(1-). Myricetin is a natural product found in Ficus auriculata, Visnea mocanera, and other organisms with data available. Myricetin is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Quercetin (related). Flavanol found in a wide variety of foodstuffs especially in red table wine, bee pollen, bilberries, blueberries, bog whortleberries, broad beans, Chinese bajberry, corn poppy leaves, cranberries, crowberries, blackcurrants, dock leaves, fennel, grapes, parsley, perilla, rutabaga, dill weed and tea (green and black). Glycosides are also widely distributed. Potential nutriceutical showing anti-HIV activity A hexahydroxyflavone that is flavone substituted by hydroxy groups at positions 3, 3, 4, 5, 5 and 7. It has been isolated from the leaves of Myrica rubra and other plants. COVID info from PDB, Protein Data Bank Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS [Raw Data] CB066_Myricetin_pos_30eV_CB000028.txt [Raw Data] CB066_Myricetin_pos_20eV_CB000028.txt [Raw Data] CB066_Myricetin_pos_40eV_CB000028.txt [Raw Data] CB066_Myricetin_pos_50eV_CB000028.txt [Raw Data] CB066_Myricetin_pos_10eV_CB000028.txt [Raw Data] CB066_Myricetin_neg_10eV_000019.txt [Raw Data] CB066_Myricetin_neg_40eV_000019.txt [Raw Data] CB066_Myricetin_neg_50eV_000019.txt [Raw Data] CB066_Myricetin_neg_20eV_000019.txt [Raw Data] CB066_Myricetin_neg_30eV_000019.txt Myricetin is a common plant-derived flavonoid with a wide range of activities including strong anti-oxidant, anticancer, antidiabetic and anti-inflammatory activities. Myricetin is a common plant-derived flavonoid with a wide range of activities including strong anti-oxidant, anticancer, antidiabetic and anti-inflammatory activities.

   

Amentoflavone

4H-1-Benzopyran-4-one, 8-(5-(5,7-dihydroxy-4-oxo-4H-1-benzopyran-2-yl)-2-hydroxyphenyl)-5,7-dihydroxy-2-(4-hydroxyphenyl)-

C30H18O10 (538.09)


Amentoflavone is a biflavonoid that is obtained by oxidative coupling of two molecules of apigenin resulting in a bond between positions C-3 of the hydroxyphenyl ring and C-8 of the chromene ring. A natural product found particularly in Ginkgo biloba and Hypericum perforatum. It has a role as a cathepsin B inhibitor, an antiviral agent, an angiogenesis inhibitor, a P450 inhibitor and a plant metabolite. It is a biflavonoid, a hydroxyflavone and a ring assembly. Amentoflavone is a natural product found in Podocarpus elongatus, Austrocedrus chilensis, and other organisms with data available. A biflavonoid that is obtained by oxidative coupling of two molecules of apigenin resulting in a bond between positions C-3 of the hydroxyphenyl ring and C-8 of the chromene ring. A natural product found particularly in Ginkgo biloba and Hypericum perforatum. D004791 - Enzyme Inhibitors > D065607 - Cytochrome P-450 Enzyme Inhibitors > D065688 - Cytochrome P-450 CYP2C9 Inhibitors D004791 - Enzyme Inhibitors > D065607 - Cytochrome P-450 Enzyme Inhibitors > D065692 - Cytochrome P-450 CYP3A Inhibitors Amentoflavone is found in fruits. Amentoflavone is obtained from Viburnum prunifolium (black haw Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4]. Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4]. Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4].

   

Ponalactone A

Ponalactone A

C19H22O6 (346.1416)


   

Nagilactone C

5,10-dihydroxy-1,6-dimethyl-12-propan-2-yl-3,8,13-trioxapentacyclo[7.7.1.02,4.06,17.011,16]heptadeca-11,15-diene-7,14-dione

C19H22O7 (362.1365)


Nagilactone is a natural product found in Podocarpus hallii, Afrocarpus gracilior

   

Sciadopitysin

4H-1-Benzopyran-4-one, 5,7-dihydroxy-8-[5-(5-hydroxy-7-methoxy-4-oxo-4H-1-benzopyran-2-yl)-2-methoxyphenyl]-2-(4-methoxyphenyl)-

C33H24O10 (580.1369)


Sciadopitysin is a biflavonoid that is a 7, 4, 4-trimethyl ether derivative of amentoflavone. It has a role as a bone density conservation agent and a platelet aggregation inhibitor. It is a biflavonoid, a hydroxyflavone, a methoxyflavone and a ring assembly. It is functionally related to an amentoflavone. Sciadopitysin is a natural product found in Podocarpus elongatus, Podocarpus urbanii, and other organisms with data available. A biflavonoid that is a 7, 4, 4-trimethyl ether derivative of amentoflavone. Sciadopitysin is a type of biflavonoids in leaves from ginkgo biloba[1]. Sciadopitysi inhibits RANKL-induced osteoclastogenesis and bone loss by inhibiting NF-κB activation and reducing the expression of c-Fos and NFATc1[2]. Sciadopitysin is a type of biflavonoids in leaves from ginkgo biloba[1]. Sciadopitysi inhibits RANKL-induced osteoclastogenesis and bone loss by inhibiting NF-κB activation and reducing the expression of c-Fos and NFATc1[2].

   

UNII:AQ51A12T8K

Ethyl beta-D-glucopyranoside

C8H16O6 (208.0947)


   

Isoginkgetin

4H-1-Benzopyran-4-one, 8-(5-(5,7-dihydroxy-4-oxo-4H-1-benzopyran-2-yl)-2-methoxyphenyl)-5,7-dihydroxy-2-(4-methoxyphenyl)-

C32H22O10 (566.1213)


Isoginkgetin is a biflavonoid resulting from the formal oxidative dimerisation between position 8 of one molecule of 5,7-dihydroxy-4-methoxyflavone and the 3 position of another. Found in the leaves of Ginkgo biloba, it is a potent inhibitor of matrix metalloproteinase 9 (MMP-9). It has a role as an EC 3.4.24.35 (gelatinase B) inhibitor, an antineoplastic agent and a plant metabolite. It is a biflavonoid and an aromatic ether. It is functionally related to a 5,7-dihydroxy-4-methoxyflavone. Isoginkgetin is a natural product found in Podocarpus latifolius, Sciadopitys verticillata, and other organisms with data available. A biflavonoid resulting from the formal oxidative dimerisation between position 8 of one molecule of 5,7-dihydroxy-4-methoxyflavone and the 3 position of another. Found in the leaves of Ginkgo biloba, it is a potent inhibitor of matrix metalloproteinase 9 (MMP-9). From leaves of Ginkgo biloba (ginkgo). Isoginkgetin is found in ginkgo nuts and fats and oils. Isoginkgetin is found in fats and oils. Isoginkgetin is from leaves of Ginkgo biloba (ginkgo Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2]. Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2]. Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2].

   

Myricanone

3,15-dihydroxy-16,17-dimethoxytricyclo[12.3.1.1^{2,6]nonadeca-1(17),2,4,6(19),14(18),15-hexaen-9-one

C21H24O5 (356.1624)


Myricanone is a cyclic ketone isolated from the bark of Morella species and has been shown to exhibit cytotoxic activity against cancer cells. It has a role as an antineoplastic agent and a plant metabolite. It is a diarylheptanoid, an aromatic ether, a member of methoxybenzenes, a member of phenols and a cyclic ketone. Myricanone is a natural product found in Myrica nagi, Morella rubra, and other organisms with data available. A cyclic ketone isolated from the bark of Morella species and has been shown to exhibit cytotoxic activity against cancer cells. Myricanone is a constituent of Myrica nagi and Myrica rubra (Chinese bayberry) [CCD]

   

Ethyl alpha-glucopyranoside

(2R,3R,4S,5S,6R)-2-ethoxy-6-(hydroxymethyl)oxane-3,4,5-triol

C8H16O6 (208.0947)


Ethyl beta-D-glucopyranoside is a constituent of Citrus peels, the fresh root cortex of Manihot esculenta (cassava), and other plant subspecies. Ethyl beta-D-glucopyranoside is found in many foods, some of which are root vegetables, citrus, alcoholic beverages, and fruits. Constituent of Citrus peels, the fresh root cortex of Manihot esculenta (cassava) and other plant subspecies Ethyl beta-D-glucopyranoside is found in many foods, some of which are root vegetables, citrus, alcoholic beverages, and fruits.

   

Sugiol

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

C20H28O2 (300.2089)


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

   

Sciadonic acid

Sciadonic((5Z,11Z,14Z)-eicosatrienoic)acid methyl ester

C20H34O2 (306.2559)


Sciadonic acid is found in fats and oils. Sciadonic acid is isolated from tall oil (Pinus sylvestris) and from Ginkgo biloba (ginkgo Isolated from tall oil (Pinus sylvestris) and from Ginkgo biloba (ginkgo). Sciadonic acid is found in fats and oils.

   

Ethyl glucoside

2-ethoxy-6-(hydroxymethyl)oxane-3,4,5-triol

C8H16O6 (208.0947)


Constituent of Citrus peels, the fresh root cortex of Manihot esculenta (cassava) and other plant subspecies Ethyl beta-D-glucopyranoside is found in many foods, some of which are root vegetables, citrus, alcoholic beverages, and fruits.

   

5,11,14-Eicosatrienoic acid

Eicosa-5,11,14-trienoic acid, (Z,Z,Z)-isomer

C20H34O2 (306.2559)


   

Nagilactone F

Nagilactone F

C19H24O4 (316.1675)


A diterpene lactone isolated from Podocarpus latifolius and has been shown to exhibit inhibitory activity against activator protein 1 (AP-1).

   

sitosterol

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

C29H50O (414.3861)


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

   

Ethyl glucoside

2-ethoxy-6-(hydroxymethyl)oxane-3,4,5-triol

C8H16O6 (208.0947)


   

Isoginkgetin

8-[5-(5,7-dihydroxy-4-oxo-chromen-2-yl)-2-methoxy-phenyl]-5,7-dihydroxy-2-(4-methoxyphenyl)chromen-4-one

C32H22O10 (566.1213)


Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2]. Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2]. Isoginkgetin is a pre-mRNA splicing inhibitor inhibitor. Isoginkgetin also inhibits activities of both Akt, NF-κB and MMP-9. Isoginkgetin inhibits the activity of the 20S proteasome, induces apoptosis and activates autophagy[1][2].

   

Amentoflavone

4H-1-Benzopyran-4-one, 8-(5-(5,7-dihydroxy-4-oxo-4H-1-benzopyran-2-yl)-2-hydroxyphenyl)-5,7-dihydroxy-2-(4-hydroxyphenyl)-

C30H18O10 (538.09)


D004791 - Enzyme Inhibitors > D065607 - Cytochrome P-450 Enzyme Inhibitors > D065688 - Cytochrome P-450 CYP2C9 Inhibitors D004791 - Enzyme Inhibitors > D065607 - Cytochrome P-450 Enzyme Inhibitors > D065692 - Cytochrome P-450 CYP3A Inhibitors Acquisition and generation of the data is financially supported by the Max-Planck-Society IPB_RECORD: 4341; CONFIDENCE confident structure Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4]. Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4]. Amentoflavone (Didemethyl-ginkgetin) is a potent and orally active GABA(A) negative modulator. Amentoflavone also shows anti-inflammatory, antioxidative, anti-viral, anti-tumor, anti-radiation, anti-fungal, antibacterial activity. Amentoflavone induces apoptosis and cell cycle arrest at sub-G1 phase[1][2][3][4].

   

(1S,8R,9S,12S,14R,15S,16R)-8,14,15-trihydroxy-1,12-dimethyl-6-propan-2-yl-5,10-dioxatetracyclo[7.6.1.0^{2,7.0^{12,16]hexadeca-2,6-diene-4,11-dione

(1S,8R,9S,12S,14R,15S,16R)-8,14,15-trihydroxy-1,12-dimethyl-6-propan-2-yl-5,10-dioxatetracyclo[7.6.1.0^{2,7.0^{12,16]hexadeca-2,6-diene-4,11-dione

C19H24O7 (364.1522)


   

Myricetin

4H-1-Benzopyran-4-one, 3,5,7-trihydroxy-2-(3,4,5-trihydroxyphenyl)- (9CI)

C15H10O8 (318.0376)


COVID info from PDB, Protein Data Bank Corona-virus Coronavirus SARS-CoV-2 COVID-19 SARS-CoV COVID19 SARS2 SARS relative retention time with respect to 9-anthracene Carboxylic Acid is 0.783 relative retention time with respect to 9-anthracene Carboxylic Acid is 0.784 Myricetin is a common plant-derived flavonoid with a wide range of activities including strong anti-oxidant, anticancer, antidiabetic and anti-inflammatory activities. Myricetin is a common plant-derived flavonoid with a wide range of activities including strong anti-oxidant, anticancer, antidiabetic and anti-inflammatory activities.

   

Catechol

(+)-Catechin Hydrate

C15H14O6 (290.079)


Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM. Catechin ((+)-Catechin) inhibits cyclooxygenase-1 (COX-1) with an IC50 of 1.4 μM.

   

totarol

4bS-trans-8,8-Trimethyl-4b,5,6,7,8,8a,9,10-octahydro-1-isopropyl-phenanthren-2-ol

C20H30O (286.2297)


A natural product found in Biota orientalis.

   

Sciadonic acid

5Z,11Z,14Z-eicosatrienoic acid

C20H34O2 (306.2559)


   

Myricanone

3,15-dihydroxy-16,17-dimethoxytricyclo[12.3.1.1^{2,6}]nonadeca-1(18),2(19),3,5,14,16-hexaen-9-one

C21H24O5 (356.1624)


   

Harzol

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

C29H50O (414.3861)


C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol D057847 - Lipid Regulating Agents > D000960 - Hypolipidemic Agents D009676 - Noxae > D000963 - Antimetabolites Beta-Sitosterol (purity>98\\%) is a plant sterol. Beta-Sitosterol (purity>98\\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1]. Beta-Sitosterol (purity>98\%) is a plant sterol. Beta-Sitosterol (purity>98\%) interfere with multiple cell signaling pathways, including cell cycle, apoptosis, proliferation, survival, invasion, angiogenesis, metastasis and inflammation[1].

   

(+)-Ar,11S-Myricanol

(+)-Ar,11S-Myricanol

C21H26O5 (358.178)


A natural product found in Myrica cerifera.

   

7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

C20H28O2 (300.2089)


   

(1s,2r,4r,5r,10s,13s,14r)-13-hydroxy-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

(1s,2r,4r,5r,10s,13s,14r)-13-hydroxy-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

C19H24O6 (348.1573)


   

(1s,8r,9s,12s,14r,16r)-14-{[(2r,3r,4s,5r,6r)-3,5-dihydroxy-6-(hydroxymethyl)-4-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}oxan-2-yl]oxy}-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,14r,16r)-14-{[(2r,3r,4s,5r,6r)-3,5-dihydroxy-6-(hydroxymethyl)-4-{[(2s,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}oxan-2-yl]oxy}-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

methyl (2r)-2-[(1s,6r,9r,12s,14r,16r)-14-hydroxy-1,12-dimethyl-4,11-dioxo-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-dien-6-yl]propanoate

methyl (2r)-2-[(1s,6r,9r,12s,14r,16r)-14-hydroxy-1,12-dimethyl-4,11-dioxo-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-dien-6-yl]propanoate

C20H24O7 (376.1522)


   

8-hydroxy-6-isopropyl-1,12-dimethyl-14-{[3,4,5-trihydroxy-6-({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

8-hydroxy-6-isopropyl-1,12-dimethyl-14-{[3,4,5-trihydroxy-6-({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

(1s,6r,9r,17r)-5-hydroxy-12-(1-hydroxyethyl)-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,6r,9r,17r)-5-hydroxy-12-(1-hydroxyethyl)-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C18H20O7 (348.1209)


   

5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.6.1.0²,⁴.0⁶,¹⁶.0¹¹,¹⁵]hexadec-11(15)-ene-7,14-dione

5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.6.1.0²,⁴.0⁶,¹⁶.0¹¹,¹⁵]hexadec-11(15)-ene-7,14-dione

C18H22O7 (350.1365)


   

(1s,4as,10as)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

(1s,4as,10as)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

C20H28O3 (316.2038)


   

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

C19H22O5 (330.1467)


   

(4bs,8s,8ar)-8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

(4bs,8s,8ar)-8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

C20H30O2 (302.2246)


   

(4bs,8s,8as)-8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

(4bs,8s,8as)-8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

C20H30O2 (302.2246)


   

(1s,8r,9s,12s,14r,15s,16r)-8,14,15-trihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,14r,15s,16r)-8,14,15-trihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O7 (364.1522)


   

(1s,6r,9s,17r)-12-ethyl-5,10-dihydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,6r,9s,17r)-12-ethyl-5,10-dihydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C18H20O7 (348.1209)


   

(2s,4as,10ar)-8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

(2s,4as,10ar)-8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

C20H30O2 (302.2246)


   

(1s,8r,9s,12r,13r,15s,17r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10,14-trioxapentacyclo[7.7.1.0²,⁷.0¹²,¹⁷.0¹³,¹⁵]heptadeca-2,6-diene-4,11-dione

(1s,8r,9s,12r,13r,15s,17r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10,14-trioxapentacyclo[7.7.1.0²,⁷.0¹²,¹⁷.0¹³,¹⁵]heptadeca-2,6-diene-4,11-dione

C19H22O6 (346.1416)


   

(1s,9r,12r,15r,16s)-8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[(2r,4s,5s,6s)-3,4,5-trihydroxy-6-({[(2r,4s,5s,6s)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12r,15r,16s)-8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[(2r,4s,5s,6s)-3,4,5-trihydroxy-6-({[(2r,4s,5s,6s)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

14-{[3,5-dihydroxy-6-(hydroxymethyl)-4-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}oxan-2-yl]oxy}-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

14-{[3,5-dihydroxy-6-(hydroxymethyl)-4-{[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}oxan-2-yl]oxy}-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

C20H30O2 (302.2246)


   

(1s,4as,10ar)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

(1s,4as,10ar)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

C20H28O2 (300.2089)


   

6-(1-hydroxypropan-2-yl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7,13-triene-4,11-dione

6-(1-hydroxypropan-2-yl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7,13-triene-4,11-dione

C19H22O5 (330.1467)


   

16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol

16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol

C21H26O5 (358.178)


   

13-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

13-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

C19H24O5 (332.1624)


   

(1s,8r,9s,12s,14r,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-14-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-({[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,14r,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-14-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-({[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

(2s,4as,10as)-8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

(2s,4as,10as)-8-isopropyl-1,1,4a-trimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-2,7-diol

C20H30O2 (302.2246)


   

(9s)-3,9,15-trihydroxy-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaen-7-one

(9s)-3,9,15-trihydroxy-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaen-7-one

C21H24O6 (372.1573)


   

(4s)-4-hydroxy-4-(3-hydroxybut-1-en-1-yl)-3,5,5-trimethylcyclohex-2-en-1-one

(4s)-4-hydroxy-4-(3-hydroxybut-1-en-1-yl)-3,5,5-trimethylcyclohex-2-en-1-one

C13H20O3 (224.1412)


   

8,14,15-trihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

8,14,15-trihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O7 (364.1522)


   

5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

C19H24O5 (332.1624)


   

(1s,9r,12s,16r)-6-ethyl-15-hydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12s,16r)-6-ethyl-15-hydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H22O5 (318.1467)


   

3,9,15-trihydroxy-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaen-7-one

3,9,15-trihydroxy-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaen-7-one

C21H24O6 (372.1573)


   

(1s,9r,12s,16r)-6-ethyl-14,15-dihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12s,16r)-6-ethyl-14,15-dihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H22O6 (334.1416)


   

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O5 (332.1624)


   

(1s,9r,12r,16r)-6-ethyl-13,14,15-trihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12r,16r)-6-ethyl-13,14,15-trihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H22O7 (350.1365)


   

(1s,6r,9r,12s,14r,16r)-14-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

(1s,6r,9r,12s,14r,16r)-14-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

C19H24O5 (332.1624)


   

(1s,8r,9s,12s,15s,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11,14-trione

(1s,8r,9s,12s,15s,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11,14-trione

C19H22O7 (362.1365)


   

(1s,8r,9s,12s,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O5 (332.1624)


   

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10,14-trioxapentacyclo[7.7.1.0²,⁷.0¹²,¹⁷.0¹³,¹⁵]heptadeca-2,6-diene-4,11-dione

8-hydroxy-6-isopropyl-1,12-dimethyl-5,10,14-trioxapentacyclo[7.7.1.0²,⁷.0¹²,¹⁷.0¹³,¹⁵]heptadeca-2,6-diene-4,11-dione

C19H22O6 (346.1416)


   

(2r,4r,5r,10s,13s)-13-hydroxy-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

(2r,4r,5r,10s,13s)-13-hydroxy-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

C19H24O6 (348.1573)


   

(1s,4as,10ar)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

(1s,4as,10ar)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

C20H28O3 (316.2038)


   

(1s,8r,9s,12s,15r,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

(1s,8r,9s,12s,15r,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

C19H22O6 (346.1416)


   

(1s,8r,9s,12s,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

(1s,8r,9s,12s,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

C19H22O5 (330.1467)


   

(1s,9r,12s,16r)-15-hydroxy-6-(1-hydroxyethyl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12s,16r)-15-hydroxy-6-(1-hydroxyethyl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H22O6 (334.1416)


   

8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O6 (348.1573)


   

(1s,2s,4r,5r,6r,9r,17r)-12-ethyl-5-hydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,2s,4r,5r,6r,9r,17r)-12-ethyl-5-hydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C18H20O6 (332.126)


   

(9r)-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol

(9r)-16,17-dimethoxytricyclo[12.3.1.1²,⁶]nonadeca-1(17),2(19),3,5,14(18),15-hexaene-3,9,15-triol

C21H26O5 (358.178)


   

(1s,4as,10as)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

(1s,4as,10as)-7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carbaldehyde

C20H28O2 (300.2089)


   

(1s,9r,12r,16r)-6-ethyl-13,15-dihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12r,16r)-6-ethyl-13,15-dihydroxy-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H22O6 (334.1416)


   

7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

7-hydroxy-8-isopropyl-1,4a-dimethyl-2,3,4,9,10,10a-hexahydrophenanthrene-1-carboxylic acid

C20H28O3 (316.2038)


   

6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

C19H24O4 (316.1675)


   

(1s,2s,4r,5r,6r,9s,10r,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,2s,4r,5r,6r,9s,10r,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C19H22O7 (362.1365)


   

14-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

14-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

C19H24O5 (332.1624)


   

(1s,2r,4r,5r,10s,14s,17r)-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

(1s,2r,4r,5r,10s,14s,17r)-5-isopropyl-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadec-8-ene-7,15-dione

C19H24O5 (332.1624)


   

(1s,9r,12r,16s)-15-chloro-13,14-dihydroxy-6-(1-hydroxyethyl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,9r,12r,16s)-15-chloro-13,14-dihydroxy-6-(1-hydroxyethyl)-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C18H21ClO7 (384.0976)


   

(1s,6r,9r,12s,16r)-6-[(2r)-1-hydroxypropan-2-yl]-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7,13-triene-4,11-dione

(1s,6r,9r,12s,16r)-6-[(2r)-1-hydroxypropan-2-yl]-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7,13-triene-4,11-dione

C19H22O5 (330.1467)


   

(1s,2s,4r,5r,6r,9s,10r,12s,16r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.6.1.0²,⁴.0⁶,¹⁶.0¹¹,¹⁵]hexadec-11(15)-ene-7,14-dione

(1s,2s,4r,5r,6r,9s,10r,12s,16r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.6.1.0²,⁴.0⁶,¹⁶.0¹¹,¹⁵]hexadec-11(15)-ene-7,14-dione

C18H22O7 (350.1365)


   

methyl 2-{14-hydroxy-1,12-dimethyl-4,11-dioxo-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-dien-6-yl}propanoate

methyl 2-{14-hydroxy-1,12-dimethyl-4,11-dioxo-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-dien-6-yl}propanoate

C20H24O7 (376.1522)


   

8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[3,4,5-trihydroxy-6-({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[3,4,5-trihydroxy-6-({[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

stigmast-5-en-3-ol, (3β)-

stigmast-5-en-3-ol, (3β)-

C29H50O (414.3861)


   

(1s,6r,9s,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,6r,9s,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C19H22O7 (362.1365)


   

(1s,2r,4r,5r,10s,14s,17r)-5-[(2r)-1-hydroxypropan-2-yl]-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadeca-8,12-diene-7,15-dione

(1s,2r,4r,5r,10s,14s,17r)-5-[(2r)-1-hydroxypropan-2-yl]-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadeca-8,12-diene-7,15-dione

C19H22O6 (346.1416)


   

(1s,4s,5r,6r,9r,17r)-12-ethyl-5-hydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,4s,5r,6r,9r,17r)-12-ethyl-5-hydroxy-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C18H20O6 (332.126)


   

5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C19H22O7 (362.1365)


   

(1s,6r,9r,12r,13s,16r)-13-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

(1s,6r,9r,12r,13s,16r)-13-hydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,7-diene-4,11-dione

C19H24O5 (332.1624)


   

(1s,8r,9s,12s,15r,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-({[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,15r,16r)-8-hydroxy-6-isopropyl-1,12-dimethyl-15-{[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-({[(2r,3r,4s,5s,6r)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy}methyl)oxan-2-yl]oxy}-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C31H44O16 (672.2629)


   

8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6,13-triene-4,11-dione

C19H22O6 (346.1416)


   

8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

8-(hydroxymethyl)-1-isopropyl-4b,8-dimethyl-5,6,7,8a,9,10-hexahydrophenanthren-2-ol

C20H30O2 (302.2246)


   

(1s,8r,9s,12s,15r,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

(1s,8r,9s,12s,15r,16r)-8,15-dihydroxy-6-isopropyl-1,12-dimethyl-5,10-dioxatetracyclo[7.6.1.0²,⁷.0¹²,¹⁶]hexadeca-2,6-diene-4,11-dione

C19H24O6 (348.1573)


   

(1s,2s,4r,5s,6r,9s,10r,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

(1s,2s,4r,5s,6r,9s,10r,17r)-5,10-dihydroxy-12-isopropyl-1,6-dimethyl-3,8,13-trioxapentacyclo[7.7.1.0²,⁴.0⁶,¹⁷.0¹¹,¹⁶]heptadeca-11,15-diene-7,14-dione

C19H22O7 (362.1365)


   

5-(1-hydroxypropan-2-yl)-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadeca-8,12-diene-7,15-dione

5-(1-hydroxypropan-2-yl)-10,14-dimethyl-3,6,16-trioxapentacyclo[8.6.1.0²,⁴.0⁴,⁹.0¹⁴,¹⁷]heptadeca-8,12-diene-7,15-dione

C19H22O6 (346.1416)