Exact Mass: 390.1831
Exact Mass Matches: 390.1831
Found 107 metabolites which its exact mass value is equals to given mass value 390.1831
,
within given mass tolerance error 0.001 dalton. Try search metabolite list with more accurate mass tolerance error
0.0002 dalton.
(R)-Hispaglabridin B
(R)-Hispaglabridin B is found in herbs and spices. (R)-Hispaglabridin B is isolated from Glycyrrhiza glabra (licorice). Isolated from Glycyrrhiza glabra (licorice). (R)-Hispaglabridin B is found in tea and herbs and spices.
Shinflavanone
Shinflavanone is found in herbs and spices. Shinflavanone is a constituent of Glycyrrhiza glabra (licorice). Constituent of Glycyrrhiza glabra (licorice). Shinflavanone is found in tea and herbs and spices.
Corylinin
Corylifol A is a natural product found in Aspergillus flocculosus and Cullen corylifolium with data available. Corylifol A inhibits IL-6-induced STAT3 activation and phosphorylation, with an IC50 of 0.81 μM. Corylifol A inhibits IL-6-induced STAT3 activation and phosphorylation, with an IC50 of 0.81 μM.
Licoflavone B
Licoflavone B is a member of flavones. Licoflavone B is a natural product found in Lupinus albus, Glycyrrhiza glabra, and Glycyrrhiza inflata with data available. See also: Glycyrrhiza inflata root (part of). Licoflavone B is a flavonoid isolated from Glycyrrhiza inflata, inhibits S. mansoni ATPase (IC50, 23.78 μM) and ADPase (IC50, 31.50 μM) activity. Anti-schistosomiasis activity[1]. Licoflavone B is a flavonoid isolated from Glycyrrhiza inflata, inhibits S. mansoni ATPase (IC50, 23.78 μM) and ADPase (IC50, 31.50 μM) activity. Anti-schistosomiasis activity[1].
Euchrenone a5
Fulvinervin A
5-hydroxy-6-(4-hydroxycinnamoyl)-2-methyl-2-(4-methyl-3-pentenyl)-2h -1-benzopyran
Paratocarpin C
2,4-dihydroxy-4,5-[2-methyl-2-(4-methylpent-3-enyl)pyran]chalcone|isolespeol
(2S)-7,8-dihydro-5-hydroxy-2-methyl-2-(4-methyl-3-pentenyl)-8-phenyl-2H,6H-benzo[1,2-b:5,4-b]dipyran-6-one
(-)-6-(3,3-dimethylallyl)-7-hydroxy-6,6-dimethylchromeno-(4,3,2,3)-flavanone|dinklagin A
3-[3-[(2E)-3,7-dimethylocta-2,6-dienyl]-4-hydroxyphenyl]-7-hydroxychromen-4-one
7-hydroxy-3-[4-hydroxy-3-(3-methylbut-2-enyl)phenyl]-8-(3-methylbut-2-enyl)chromen-4-one
3-[3-[(2E)-3,7-dimethylocta-2,6-dienyl]-4-hydroxyphenyl]-7-hydroxychromen-4-one
7-hydroxy-3-[4-hydroxy-3-(3-methylbut-2-enyl)phenyl]-8-(3-methylbut-2-enyl)chromen-4-one [IIN-based on: CCMSLIB00000848794]
7-hydroxy-3-[4-hydroxy-3-(3-methylbut-2-enyl)phenyl]-8-(3-methylbut-2-enyl)chromen-4-one [IIN-based: Match]
3-[3-[(2E)-3,7-dimethylocta-2,6-dienyl]-4-hydroxyphenyl]-7-hydroxychromen-4-one [IIN-based on: CCMSLIB00000846120]
3-[3-[(2E)-3,7-dimethylocta-2,6-dienyl]-4-hydroxyphenyl]-7-hydroxychromen-4-one [IIN-based: Match]
CorylifolA
CorylifolA is a natural compound that belongs to the class of flavonoids, which are widely distributed in plants and are known for their diverse biological activities. Specifically, CorylifolA is a type of isoflavone, a subclass of flavonoids. It has been identified in various plant species, including members of the Fabaceae family. The chemical structure of CorylifolA features a central ring structure composed of three carbon atoms and one oxygen atom, which is characteristic of all flavonoids. This core structure is decorated with hydroxyl groups and a variety of other functional groups that contribute to its specific properties and activities. Biologically, CorylifolA and other isoflavones have been the subject of significant research due to their potential health benefits. They are known to have antioxidant properties, which means they can help to neutralize harmful free radicals in the body and reduce oxidative stress. Additionally, isoflavones like CorylifolA are often studied for their potential anti-inflammatory, anti-cancer, and estrogenic or anti-estrogenic effects. In terms of pharmacological applications, CorylifolA and similar compounds are of interest for the development of therapeutic agents. However, it is important to note that the biological activities and potential uses of CorylifolA are still under investigation, and more research is needed to fully understand its effects and applications.