Chemical Formula: C14H16O3
Chemical Formula C14H16O3
Found 109 metabolite its formula value is C14H16O3
Marindinin
Marindinin is found in beverages. Marindinin is found in the roots of kava (Piper methysticum). FDA advises against use of kava in food due to potential risk of severe liver damage (2002 Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks. Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks.
3-[4-hydroxy-3-(3-methylbut-2-enyl)phenyl]prop-2-enoic acid
Pterosin E
Constituent of Pteridium aquilinum (bracken fern) leaves. Pterosin E is found in green vegetables and root vegetables. Pterosin E is found in green vegetables. Pterosin E is a constituent of Pteridium aquilinum (bracken fern) leaves.
Tetrahydrofurfuryl cinnamate
Tetrahydrofurfuryl cinnamate is a flavouring agent with sweet vinous odou Flavouring agent with sweet vinous odour
Marindinin
Dihydrokavain is a member of 2-pyranones and an aromatic ether. Dihydrokawain is a natural product found in Piper methysticum, Alnus sieboldiana, and other organisms with data available. See also: Piper methysticum root (part of). Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks. Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks.
2HP328XN7C
Fraxinellone is a member of 2-benzofurans. Fraxinellone is a natural product found in Raulinoa echinata, Melia azedarach, and other organisms with data available. Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1]. Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1]. Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1].
3-Furan-3-yl-3a,7-dimethyl-3a,4,5,6-tetrahydro-3H-isobenzofuran-1-one
3-(isobutyryloxymethyl)-6-methylbenzofuran|O-(2-Methylpropanoyl)-6-Methyl-3-benzofuranmethanol
Fraxinellone
Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1]. Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1]. Fraxinellone is isolated from the root bark of the Rutaceae plant, Dictamnus dasycarpus. Fraxinellone is a PD-L1 inhibitor and inhibits HIF-1α protein synthesis without affecting HIF-1α protein degradation. Fraxinellone has the potential to be a valuable candidate for cancer treatment by targeting PD-L1[1].
(6R,7R)-tetradeca-4E,12E-diene-6,7-diol-8,10-diyneal
1-(2-hydroxy-4-methoxy-5-methylphenyl)-2,4-E,E-hexadien-1-one|1-(2-hydroxy-4-methoxy-5-methylphenyl)-E,E-2,4-hexadien-1-one
(8alpha,10beta)-form-15-Nor-4-oxo-1(5),11(13)-guaiadien-12,8-olide
(2E,4E)-1-(2,6-dihydroxy-3,5-dimethyl-phenyl)hexa-2,4-dien-1-one
(2E)-3-[(2S)-2,3-dihydro-2-(2-hydroxypropan-2-yl)-1-benzofuran-5-yl]prop-2-enal|(S)-demethoxywutaiensal
(2E)-3-[(3R)-3,4-dihydro-3-hydroxy-2,2-dimethyl-2H-chromen-6-yl]prop-2-enal|(R)-wutaipyranol A
(-)-2,3-dihydro-7-hydroxy-6,8-dimethyl-2-[(E)-prop-1-enyl]-chroman-4-one
2-hydroxy-1-((S)-2-(prop-1-en-2-yl)-2,3-dihydrobenzofuran-5-yl)propan-1-one|phenostereum A
(E)-3-(2,2-dimethylchroman-6-yl)-2-propenoic acid|(E)-3-(2,2-dimethylchroman-6-yl)acrylic acid|3-[(2H)-2,2-dimethyl-3,4-dihydrobenzopyran-6-yl]-2E-propenoic acid|Drupacin|dupracine
4-Acetyl-2,3-dihydro-2-isopropenyl-5-methoxybenzofuran
4-oxo-5(6),11-eudesmadien-8,12-olide|noralantolactone
(2E,4E)-1-(2,4-dihydroxy-3,5-dimethylphenyl)hexa-2,4-dien-1-one
Dihydrokavain
Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks. Dihydrokavain is one of the six major kavalactones found in the kava plant; appears to contribute significantly to the anxiolytic effects of kava, based on a study in chicks.
(4S,5Z,6S)-4-(2-methoxy-2-oxoethyl)-5-[2-[(E)-3-phenylprop-2-enoyl]oxyethylidene]-6-[(2S,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxy-4H-pyran-3-carboxylic acid
3,4,5,6-tetrahydro-6,6-dimethyl-spiro[isobenzofuran-1(3H),2-[2H]pyran]-3-one
Cyclohexanecarboxylic acid, 4-oxo-, phenylmethyl ester
(R)-6-Benzyloxymethyl-4-methyl-5,6-dihydro-pyran-2-one
2-Benzoxepin-1,3-dione,4,5-dihydro-4,4,7,9-tetramethyl-
BENZENEACETIC ACID, 4-(CYCLOPROPYLCARBONYL)-A,A-DIMETHYL-
(E)-3-(2-Formylphenyl)-2-propenoic acid 1,1-dimethyl ethyl ester
1-(5,8-dimethoxy-3,4-dihydronaphthalen-2-yl)ethanone
2-Naphthalenebutanoicacid, 5,6,7,8-tetrahydro-g-oxo-
1-(2-methylphenyl)-4-oxocyclohexane-1-carboxylic acid
6,6-Dimethyl-3h-spiro[2-benzofuran-1,2-oxane]-3-one
Drupanin
Drupanin is a compound isolated from green propolis. Drupanin can selectively inhibit the AKR1C3 enzyme. Drupanin has the potential for the research of breast cancer[1].