Page last updated: 2024-12-10

genkwanin

Description Research Excerpts Clinical Trials Roles Classes Pathways Study Profile Bioassays Related Drugs Related Conditions Protein Interactions Research Growth Market Indicators

Description

genkwanin: structure [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

genkwanin : A monomethoxyflavone that is apigenin in which the hydroxy group at position 7 is methylated. [Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Cross-References

ID SourceID
PubMed CID5281617
CHEMBL ID210635
CHEBI ID75718
SCHEMBL ID866123
MeSH IDM0063159

Synonyms (67)

Synonym
BRD-K29160894-001-02-9
DIVK1C_006931
SPECTRUM4_001667
SPECTRUM_000330
BSPBIO_003042
NCGC00178332-01
SPECTRUM5_000573
7'o-methyl-apigenin
5-hydroxy-2-(4-hydroxyphenyl)-7-methoxy-chromen-4-one
4',5-dihydroxy-7-methoxyflavone
gengkwanin
apigenin 7-methyl ether
437-64-9
C10046
genkwanin
KBIO2_003378
KBIO2_000810
KBIOSS_000810
KBIO2_005946
KBIO3_002262
KBIOGR_002193
KBIO1_001875
SPBIO_001569
SPECTRUM3_001401
SPECTRUM2_001355
SPECPLUS_000835
4'',5-dihydroxy-7-methoxy flavone
bdbm50187658
5-hydroxy-2-(4-hydroxyphenyl)-7-methoxy-4h-chromen-4-one
4'',5-dihydroxy-7-methoxyflavone
CHEMBL210635 ,
chebi:75718 ,
gonkwanin
7-o-methylapigenin
LMPK12111018
5,4'-dihydroxy-7-methoxyflavone
5-hydroxy-2-(4-hydroxyphenyl)-7-methoxychromen-4-one
7-methoxyapigenin
unii-5k3i5d6b2b
5k3i5d6b2b ,
S9287
CCG-38838
7-methylapigenin
puddumetin
FT-0617186
4h-1-benzopyran-4-one,5-hydroxy-2-(4-hydroxyphenyl)-7-methoxy-
AKOS015896775
SCHEMBL866123
4h-1-benzopyran-4-one, 5-hydroxy-2-(4-hydroxyphenyl)-7-methoxy-
AC-34953
henquanin
JPMYFOBNRRGFNO-UHFFFAOYSA-N
5-hydroxy-2-(4-hydroxyphenyl)-7-methoxy-4h-chromen-4-one #
flavone, 4',5-dihydroxy-7-methoxy-
mfcd00017452
4',5-dihydroxy-7-methoxyflavone, aldrichcpr
DTXSID80195908
genkwanin, analytical standard
AS-60761
genkwanin, >=98% (hplc)
HY-N0731
CS-0009744
Q3050376
n-2,4-dimethylphenyl-n-methylformamidine
A14787
A913691
NCGC00178332-02

Research Excerpts

Overview

Genkwanin is a biologically active O-methylated flavone extracted from Daphne genkwa.

ExcerptReferenceRelevance
"Genkwanin is a biologically active O-methylated flavone extracted from "( Genkwanin Alleviates Mitochondrial Dysfunction and Oxidative Stress in a Murine Model of Experimental Colitis: The Participation of Sirt1.
Chen, Z; He, Y; Hu, F; Li, M; Yao, Y, 2022
)
3.61
"Genkwanin is an active component extracted from Daphne genkwa possessing pharmacologic effects."( Genkwanin suppresses mitochondrial dysfunction to alleviate IL-1β-elicited inflammation, apoptosis, and degradation of extracellular matrix in chondrocytes through upregulating DUSP1.
Wang, H; Wu, Z; Xu, K,
)
2.3
"Genkwanin is a flavone isolated from the traditional Chinese herb Daphne genkwa. "( Genkwanin ameliorates adjuvant-induced arthritis in rats through inhibiting JAK/STAT and NF-κB signaling pathways.
Bao, Y; Gan, L; Ji, J; Sun, YW; Wang, CZ; Yuan, CS; Zhang, CF, 2019
)
3.4

Pharmacokinetics

ExcerptReferenceRelevance
" Male rats were orally or intravenously administered a 250 mg/kg concentration of a KP extract, and blood samples were obtained at selected times to determine pharmacokinetic parameters of PMF, TMF, and DMF."( Pharmacokinetics, bioavailability, tissue distribution, excretion, and metabolite identification of methoxyflavones in Kaempferia parviflora extract in rats.
Jay, M; Mekjaruskul, C; Sripanidkulchai, B, 2012
)
0.38

Bioavailability

ExcerptReferenceRelevance
" The methoxyflavones showed low oral bioavailability of 1 to 4%."( Pharmacokinetics, bioavailability, tissue distribution, excretion, and metabolite identification of methoxyflavones in Kaempferia parviflora extract in rats.
Jay, M; Mekjaruskul, C; Sripanidkulchai, B, 2012
)
0.38
"The aim of the present study was to develop an optimized Genkwanin (GKA)-loaded self-nanoemulsifying drug delivery system (SNEDDS) formulation to enhance the solubility, intestinal permeability, oral bioavailability and anti-colitis-associated colorectal cancer (CAC) activity of GKA."( Self-Nanoemulsifying Drug Delivery System of Genkwanin: A Novel Approach for Anti-Colitis-Associated Colorectal Cancer.
Chen, WG; He, X; Ouyang, T; Sun, SD; Yang, XL; Yin, CM; Yin, HF; Zhang, CF, 2021
)
1.13
" Pharmacokinetic studies demonstrated that compared with GKA suspension, the relative bioavailability of GKA-SNEDDS was increased by 353."( Self-Nanoemulsifying Drug Delivery System of Genkwanin: A Novel Approach for Anti-Colitis-Associated Colorectal Cancer.
Chen, WG; He, X; Ouyang, T; Sun, SD; Yang, XL; Yin, CM; Yin, HF; Zhang, CF, 2021
)
0.88
"Our results show that the developed GKA-SNEDDS exhibited enhanced oral bioavailability and excellent anti-CAC efficacy."( Self-Nanoemulsifying Drug Delivery System of Genkwanin: A Novel Approach for Anti-Colitis-Associated Colorectal Cancer.
Chen, WG; He, X; Ouyang, T; Sun, SD; Yang, XL; Yin, CM; Yin, HF; Zhang, CF, 2021
)
0.88
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (1)

RoleDescription
metaboliteAny intermediate or product resulting from metabolism. The term 'metabolite' subsumes the classes commonly known as primary and secondary metabolites.
[role information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Drug Classes (2)

ClassDescription
dihydroxyflavoneAny hydroxyflavone in which two ring hydrogens are replaced by hydroxy substituents.
monomethoxyflavoneAny methoxyflavone with a single methoxy substituent.
[compound class information is derived from Chemical Entities of Biological Interest (ChEBI), Hastings J, Owen G, Dekker A, Ennis M, Kale N, Muthukrishnan V, Turner S, Swainston N, Mendes P, Steinbeck C. (2016). ChEBI in 2016: Improved services and an expanding collection of metabolites. Nucleic Acids Res]

Pathways (1)

PathwayProteinsCompounds
salvigenin biosynthesis713

Protein Targets (7)

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Cytochrome P450 1A1Homo sapiens (human)Ki2.34000.01200.94693.8000AID598341
Receptor-type tyrosine-protein kinase FLT3Homo sapiens (human)IC50 (µMol)1.70000.00010.32759.5480AID1756088
Cytochrome P450 1B1Homo sapiens (human)Ki2.34000.00300.97417.4600AID598342
Inositol polyphosphate multikinaseHomo sapiens (human)IC50 (µMol)30.00001.10003.78337.2000AID1572025
MAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)IC50 (µMol)0.97900.00700.95946.2700AID1698502
Inositol hexakisphosphate kinase 2Homo sapiens (human)IC50 (µMol)24.00000.50002.35567.1000AID1572024
Sialidase-2Homo sapiens (human)IC50 (µMol)1,000.00003.90006.73337.8000AID466938
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (134)

Processvia Protein(s)Taxonomy
cellular response to organic cyclic compoundCytochrome P450 1A1Homo sapiens (human)
response to hypoxiaCytochrome P450 1A1Homo sapiens (human)
long-chain fatty acid metabolic processCytochrome P450 1A1Homo sapiens (human)
lipid hydroxylationCytochrome P450 1A1Homo sapiens (human)
fatty acid metabolic processCytochrome P450 1A1Homo sapiens (human)
steroid biosynthetic processCytochrome P450 1A1Homo sapiens (human)
porphyrin-containing compound metabolic processCytochrome P450 1A1Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 1A1Homo sapiens (human)
steroid metabolic processCytochrome P450 1A1Homo sapiens (human)
estrogen metabolic processCytochrome P450 1A1Homo sapiens (human)
amine metabolic processCytochrome P450 1A1Homo sapiens (human)
response to nematodeCytochrome P450 1A1Homo sapiens (human)
response to herbicideCytochrome P450 1A1Homo sapiens (human)
ethylene metabolic processCytochrome P450 1A1Homo sapiens (human)
coumarin metabolic processCytochrome P450 1A1Homo sapiens (human)
flavonoid metabolic processCytochrome P450 1A1Homo sapiens (human)
response to iron(III) ionCytochrome P450 1A1Homo sapiens (human)
insecticide metabolic processCytochrome P450 1A1Homo sapiens (human)
dibenzo-p-dioxin catabolic processCytochrome P450 1A1Homo sapiens (human)
epoxygenase P450 pathwayCytochrome P450 1A1Homo sapiens (human)
response to foodCytochrome P450 1A1Homo sapiens (human)
response to lipopolysaccharideCytochrome P450 1A1Homo sapiens (human)
response to vitamin ACytochrome P450 1A1Homo sapiens (human)
response to immobilization stressCytochrome P450 1A1Homo sapiens (human)
vitamin D metabolic processCytochrome P450 1A1Homo sapiens (human)
retinol metabolic processCytochrome P450 1A1Homo sapiens (human)
long-chain fatty acid biosynthetic processCytochrome P450 1A1Homo sapiens (human)
9-cis-retinoic acid biosynthetic processCytochrome P450 1A1Homo sapiens (human)
camera-type eye developmentCytochrome P450 1A1Homo sapiens (human)
nitric oxide metabolic processCytochrome P450 1A1Homo sapiens (human)
response to arsenic-containing substanceCytochrome P450 1A1Homo sapiens (human)
digestive tract developmentCytochrome P450 1A1Homo sapiens (human)
tissue remodelingCytochrome P450 1A1Homo sapiens (human)
hydrogen peroxide biosynthetic processCytochrome P450 1A1Homo sapiens (human)
response to hyperoxiaCytochrome P450 1A1Homo sapiens (human)
maternal process involved in parturitionCytochrome P450 1A1Homo sapiens (human)
hepatocyte differentiationCytochrome P450 1A1Homo sapiens (human)
cellular response to copper ionCytochrome P450 1A1Homo sapiens (human)
omega-hydroxylase P450 pathwayCytochrome P450 1A1Homo sapiens (human)
positive regulation of G1/S transition of mitotic cell cycleCytochrome P450 1A1Homo sapiens (human)
response to 3-methylcholanthreneCytochrome P450 1A1Homo sapiens (human)
hemopoiesisReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
leukocyte homeostasisReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
myeloid progenitor cell differentiationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
pro-B cell differentiationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cell surface receptor protein tyrosine kinase signaling pathwayReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of cell population proliferationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
response to organonitrogen compoundReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
peptidyl-tyrosine phosphorylationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cytokine-mediated signaling pathwayReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
B cell differentiationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
animal organ regenerationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
common myeloid progenitor cell proliferationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
vascular endothelial growth factor signaling pathwayReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of tyrosine phosphorylation of STAT proteinReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
regulation of apoptotic processReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of MAP kinase activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of MAPK cascadeReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
lymphocyte proliferationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
protein autophosphorylationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transductionReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cellular response to cytokine stimulusReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cellular response to glucocorticoid stimulusReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
dendritic cell differentiationReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
positive regulation of kinase activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
multicellular organism developmentReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cellular response to organic cyclic compoundCytochrome P450 1B1Homo sapiens (human)
angiogenesisCytochrome P450 1B1Homo sapiens (human)
trabecular meshwork developmentCytochrome P450 1B1Homo sapiens (human)
DNA modificationCytochrome P450 1B1Homo sapiens (human)
xenobiotic metabolic processCytochrome P450 1B1Homo sapiens (human)
nitric oxide biosynthetic processCytochrome P450 1B1Homo sapiens (human)
cell adhesionCytochrome P450 1B1Homo sapiens (human)
response to nutrientCytochrome P450 1B1Homo sapiens (human)
steroid metabolic processCytochrome P450 1B1Homo sapiens (human)
estrogen metabolic processCytochrome P450 1B1Homo sapiens (human)
negative regulation of cell population proliferationCytochrome P450 1B1Homo sapiens (human)
male gonad developmentCytochrome P450 1B1Homo sapiens (human)
intrinsic apoptotic signaling pathway in response to oxidative stressCytochrome P450 1B1Homo sapiens (human)
toxin metabolic processCytochrome P450 1B1Homo sapiens (human)
positive regulation of vascular endothelial growth factor productionCytochrome P450 1B1Homo sapiens (human)
positive regulation of smooth muscle cell migrationCytochrome P450 1B1Homo sapiens (human)
sterol metabolic processCytochrome P450 1B1Homo sapiens (human)
arachidonic acid metabolic processCytochrome P450 1B1Homo sapiens (human)
epoxygenase P450 pathwayCytochrome P450 1B1Homo sapiens (human)
collagen fibril organizationCytochrome P450 1B1Homo sapiens (human)
adrenal gland developmentCytochrome P450 1B1Homo sapiens (human)
negative regulation of cell migrationCytochrome P450 1B1Homo sapiens (human)
negative regulation of NF-kappaB transcription factor activityCytochrome P450 1B1Homo sapiens (human)
response to follicle-stimulating hormoneCytochrome P450 1B1Homo sapiens (human)
response to estradiolCytochrome P450 1B1Homo sapiens (human)
negative regulation of cell adhesion mediated by integrinCytochrome P450 1B1Homo sapiens (human)
benzene-containing compound metabolic processCytochrome P450 1B1Homo sapiens (human)
retinol metabolic processCytochrome P450 1B1Homo sapiens (human)
retinal metabolic processCytochrome P450 1B1Homo sapiens (human)
positive regulation of apoptotic processCytochrome P450 1B1Homo sapiens (human)
blood vessel endothelial cell migrationCytochrome P450 1B1Homo sapiens (human)
endothelial cell migrationCytochrome P450 1B1Homo sapiens (human)
estrous cycleCytochrome P450 1B1Homo sapiens (human)
positive regulation of translationCytochrome P450 1B1Homo sapiens (human)
positive regulation of angiogenesisCytochrome P450 1B1Homo sapiens (human)
positive regulation of receptor signaling pathway via JAK-STATCytochrome P450 1B1Homo sapiens (human)
membrane lipid catabolic processCytochrome P450 1B1Homo sapiens (human)
response to arsenic-containing substanceCytochrome P450 1B1Homo sapiens (human)
blood vessel morphogenesisCytochrome P450 1B1Homo sapiens (human)
retinal blood vessel morphogenesisCytochrome P450 1B1Homo sapiens (human)
ganglion developmentCytochrome P450 1B1Homo sapiens (human)
cellular response to hydrogen peroxideCytochrome P450 1B1Homo sapiens (human)
cellular response to cAMPCytochrome P450 1B1Homo sapiens (human)
cellular response to tumor necrosis factorCytochrome P450 1B1Homo sapiens (human)
cellular response to luteinizing hormone stimulusCytochrome P450 1B1Homo sapiens (human)
cellular response to cortisol stimulusCytochrome P450 1B1Homo sapiens (human)
cellular response to progesterone stimulusCytochrome P450 1B1Homo sapiens (human)
response to dexamethasoneCytochrome P450 1B1Homo sapiens (human)
endothelial cell-cell adhesionCytochrome P450 1B1Homo sapiens (human)
response to indole-3-methanolCytochrome P450 1B1Homo sapiens (human)
cellular response to toxic substanceCytochrome P450 1B1Homo sapiens (human)
omega-hydroxylase P450 pathwayCytochrome P450 1B1Homo sapiens (human)
response to 3-methylcholanthreneCytochrome P450 1B1Homo sapiens (human)
regulation of reactive oxygen species metabolic processCytochrome P450 1B1Homo sapiens (human)
positive regulation of reactive oxygen species metabolic processCytochrome P450 1B1Homo sapiens (human)
positive regulation of DNA biosynthetic processCytochrome P450 1B1Homo sapiens (human)
inositol trisphosphate metabolic processInositol polyphosphate multikinaseHomo sapiens (human)
inositol phosphate metabolic processInositol polyphosphate multikinaseHomo sapiens (human)
phosphatidylinositol metabolic processInositol polyphosphate multikinaseHomo sapiens (human)
necroptotic processInositol polyphosphate multikinaseHomo sapiens (human)
inositol phosphate biosynthetic processInositol polyphosphate multikinaseHomo sapiens (human)
regulation of translationMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
protein phosphorylationMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
cell surface receptor signaling pathwayMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
hemopoiesisMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
intracellular signal transductionMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
cellular response to arsenic-containing substanceMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
extrinsic apoptotic signaling pathway in absence of ligandMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
peptidyl-serine phosphorylationMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
protein autophosphorylationMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
negative regulation of cell growthInositol hexakisphosphate kinase 2Homo sapiens (human)
positive regulation of peptidyl-serine phosphorylationInositol hexakisphosphate kinase 2Homo sapiens (human)
positive regulation of apoptotic processInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol phosphate metabolic processInositol hexakisphosphate kinase 2Homo sapiens (human)
phosphatidylinositol phosphate biosynthetic processInositol hexakisphosphate kinase 2Homo sapiens (human)
protein stabilizationInositol hexakisphosphate kinase 2Homo sapiens (human)
cellular response to flavonoidInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol phosphate biosynthetic processInositol hexakisphosphate kinase 2Homo sapiens (human)
glycoprotein catabolic processSialidase-2Homo sapiens (human)
ganglioside catabolic processSialidase-2Homo sapiens (human)
oligosaccharide catabolic processSialidase-2Homo sapiens (human)
glycosphingolipid catabolic processSialidase-2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (56)

Processvia Protein(s)Taxonomy
monooxygenase activityCytochrome P450 1A1Homo sapiens (human)
iron ion bindingCytochrome P450 1A1Homo sapiens (human)
protein bindingCytochrome P450 1A1Homo sapiens (human)
arachidonic acid monooxygenase activityCytochrome P450 1A1Homo sapiens (human)
oxidoreductase activityCytochrome P450 1A1Homo sapiens (human)
oxidoreductase activity, acting on diphenols and related substances as donorsCytochrome P450 1A1Homo sapiens (human)
flavonoid 3'-monooxygenase activityCytochrome P450 1A1Homo sapiens (human)
oxygen bindingCytochrome P450 1A1Homo sapiens (human)
enzyme bindingCytochrome P450 1A1Homo sapiens (human)
heme bindingCytochrome P450 1A1Homo sapiens (human)
Hsp70 protein bindingCytochrome P450 1A1Homo sapiens (human)
demethylase activityCytochrome P450 1A1Homo sapiens (human)
Hsp90 protein bindingCytochrome P450 1A1Homo sapiens (human)
aromatase activityCytochrome P450 1A1Homo sapiens (human)
vitamin D 24-hydroxylase activityCytochrome P450 1A1Homo sapiens (human)
estrogen 16-alpha-hydroxylase activityCytochrome P450 1A1Homo sapiens (human)
estrogen 2-hydroxylase activityCytochrome P450 1A1Homo sapiens (human)
long-chain fatty acid omega-hydroxylase activityCytochrome P450 1A1Homo sapiens (human)
hydroperoxy icosatetraenoate dehydratase activityCytochrome P450 1A1Homo sapiens (human)
long-chain fatty acid omega-1 hydroxylase activityCytochrome P450 1A1Homo sapiens (human)
protein tyrosine kinase activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
transmembrane receptor protein tyrosine kinase activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
cytokine receptor activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
vascular endothelial growth factor receptor activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
protein bindingReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
ATP bindingReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
nuclear glucocorticoid receptor bindingReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
protein-containing complex bindingReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
phosphatidylinositol 3-kinase activator activityReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
growth factor bindingReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
monooxygenase activityCytochrome P450 1B1Homo sapiens (human)
iron ion bindingCytochrome P450 1B1Homo sapiens (human)
protein bindingCytochrome P450 1B1Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, reduced flavin or flavoprotein as one donor, and incorporation of one atom of oxygenCytochrome P450 1B1Homo sapiens (human)
heme bindingCytochrome P450 1B1Homo sapiens (human)
aromatase activityCytochrome P450 1B1Homo sapiens (human)
estrogen 16-alpha-hydroxylase activityCytochrome P450 1B1Homo sapiens (human)
hydroperoxy icosatetraenoate dehydratase activityCytochrome P450 1B1Homo sapiens (human)
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, NAD(P)H as one donor, and incorporation of one atom of oxygenCytochrome P450 1B1Homo sapiens (human)
inositol-1,4,5-trisphosphate 6-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
inositol tetrakisphosphate 3-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
inositol tetrakisphosphate 6-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
protein bindingInositol polyphosphate multikinaseHomo sapiens (human)
ATP bindingInositol polyphosphate multikinaseHomo sapiens (human)
inositol-1,4,5-trisphosphate 3-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
metal ion bindingInositol polyphosphate multikinaseHomo sapiens (human)
1-phosphatidylinositol-4,5-bisphosphate 3-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
inositol tetrakisphosphate 5-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
flavonoid bindingInositol polyphosphate multikinaseHomo sapiens (human)
myo-inositol-1,2,3,4,6-heptakisphosphate 5-kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
inositol tetrakisphosphate kinase activityInositol polyphosphate multikinaseHomo sapiens (human)
protein serine/threonine kinase activityMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
protein bindingMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
ATP bindingMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
metal ion bindingMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
protein serine kinase activityMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
calcium-dependent protein serine/threonine kinase activityMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
calmodulin-dependent protein kinase activityMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
calmodulin bindingMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
inositol-1,3,4,5,6-pentakisphosphate kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol hexakisphosphate kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol heptakisphosphate kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol hexakisphosphate 5-kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
protein bindingInositol hexakisphosphate kinase 2Homo sapiens (human)
ATP bindingInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol 5-diphosphate pentakisphosphate 5-kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
inositol diphosphate tetrakisphosphate kinase activityInositol hexakisphosphate kinase 2Homo sapiens (human)
flavonoid bindingInositol hexakisphosphate kinase 2Homo sapiens (human)
exo-alpha-sialidase activitySialidase-2Homo sapiens (human)
protein bindingSialidase-2Homo sapiens (human)
exo-alpha-(2->3)-sialidase activitySialidase-2Homo sapiens (human)
exo-alpha-(2->6)-sialidase activitySialidase-2Homo sapiens (human)
exo-alpha-(2->8)-sialidase activitySialidase-2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (20)

Processvia Protein(s)Taxonomy
mitochondrial inner membraneCytochrome P450 1A1Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 1A1Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 1A1Homo sapiens (human)
endoplasmic reticulumReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
endoplasmic reticulum lumenReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
plasma membraneReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
endosome membraneReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
receptor complexReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
plasma membraneReceptor-type tyrosine-protein kinase FLT3Homo sapiens (human)
mitochondrionCytochrome P450 1B1Homo sapiens (human)
endoplasmic reticulum membraneCytochrome P450 1B1Homo sapiens (human)
intracellular membrane-bounded organelleCytochrome P450 1B1Homo sapiens (human)
nucleoplasmInositol polyphosphate multikinaseHomo sapiens (human)
nucleusInositol polyphosphate multikinaseHomo sapiens (human)
cytoplasmInositol polyphosphate multikinaseHomo sapiens (human)
nucleoplasmMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
nuclear bodyMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
PML bodyMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
nucleusMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
cytoplasmMAP kinase-interacting serine/threonine-protein kinase 2Homo sapiens (human)
fibrillar centerInositol hexakisphosphate kinase 2Homo sapiens (human)
nucleusInositol hexakisphosphate kinase 2Homo sapiens (human)
nucleoplasmInositol hexakisphosphate kinase 2Homo sapiens (human)
cell junctionInositol hexakisphosphate kinase 2Homo sapiens (human)
nucleusInositol hexakisphosphate kinase 2Homo sapiens (human)
cytoplasmInositol hexakisphosphate kinase 2Homo sapiens (human)
cytosolSialidase-2Homo sapiens (human)
catalytic complexSialidase-2Homo sapiens (human)
lysosomeSialidase-2Homo sapiens (human)
membraneSialidase-2Homo sapiens (human)
cytoplasmSialidase-2Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (52)

Assay IDTitleYearJournalArticle
AID280039Cytotoxicity against human TERT-RPE1 cells2007Journal of natural products, Mar, Volume: 70, Issue:3
Cytotoxic constituents from the fruiting branches of Callicarpa americana collected in southern Florida.
AID280038Cytotoxicity against human LNCaP cells2007Journal of natural products, Mar, Volume: 70, Issue:3
Cytotoxic constituents from the fruiting branches of Callicarpa americana collected in southern Florida.
AID338750Inhibition of bovine thymus p56LCK-catalyzed phosphorylation of angiotensin 1 by SDS-PAGE
AID265762Antiplasmodial activity against chloroquine-resistant Plasmodium falciparum K12006Journal of medicinal chemistry, Jun-01, Volume: 49, Issue:11
Inhibition of Plasmodium falciparum fatty acid biosynthesis: evaluation of FabG, FabZ, and FabI as drug targets for flavonoids.
AID977602Inhibition of sodium fluorescein uptake in OATP1B3-transfected CHO cells at an equimolar substrate-inhibitor concentration of 10 uM2013Molecular pharmacology, Jun, Volume: 83, Issue:6
Structure-based identification of OATP1B1/3 inhibitors.
AID1756089Inhibition of recombinant His-tagged human FLT3 (564 to 958 residues) expressed in baculovirus expression system at 10 uM using tyr 02 as substrate incubated for 1 hr by Z'-LYTE assay relative to control2021Journal of natural products, 01-22, Volume: 84, Issue:1
Investigation of Selected Flavonoid Derivatives as Potent FLT3 Inhibitors for the Potential Treatment of Acute Myeloid Leukemia.
AID598342Inhibition of CYP1B1 EROD activity assessed as inhibition of deethylation of 7-ethoxyresorufin to resorufin2011Bioorganic & medicinal chemistry, May-01, Volume: 19, Issue:9
Comparative CYP1A1 and CYP1B1 substrate and inhibitor profile of dietary flavonoids.
AID354853Cytotoxicity against mouse P388 cells1996Journal of natural products, Jul, Volume: 59, Issue:7
DNA topoisomerase I inhibitors: cytotoxic flavones from Lethedon tannaensis.
AID598380Activation factor, ratio of IC50 for non-CYP1 expressing human MCF10A to IC50 for CYP1 expressing human MDA-MB-468 cells2011Bioorganic & medicinal chemistry, May-01, Volume: 19, Issue:9
Comparative CYP1A1 and CYP1B1 substrate and inhibitor profile of dietary flavonoids.
AID1546538Antioxidant activity assessed as ONOO scavenging activity2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID466938Inhibition of human Neu2 assessed as MuNANA substrate hydrolysis in presence of 0.1% Triton X-100 by discontinuous fluorimetric assay2010Bioorganic & medicinal chemistry, Feb-15, Volume: 18, Issue:4
Potent inhibitor scaffold against Trypanosoma cruzi trans-sialidase.
AID1434690Inhibition of sucrose loaded POPC/POPE/POPS/PtdIns(3,4,5)P3 (59:20:20:1) liposome binding to eGFP-fused PDK1 PH domain (unknown origin) expressed in Escherichia coli BL21 at 20 uM after 10 mins by fluorescence spectrophotometry based pull down assay relat2017Bioorganic & medicinal chemistry letters, 02-01, Volume: 27, Issue:3
Inhibitory potential of flavonoids on PtdIns(3,4,5)P3 binding with the phosphoinositide-dependent kinase 1 pleckstrin homology domain.
AID466939Selectivity for Trypanosoma cruzi trans-sialidase mutant over human Neu22010Bioorganic & medicinal chemistry, Feb-15, Volume: 18, Issue:4
Potent inhibitor scaffold against Trypanosoma cruzi trans-sialidase.
AID598341Inhibition of CYP1A1 EROD activity assessed as inhibition of deethylation of 7-ethoxyresorufin to resorufin2011Bioorganic & medicinal chemistry, May-01, Volume: 19, Issue:9
Comparative CYP1A1 and CYP1B1 substrate and inhibitor profile of dietary flavonoids.
AID354854Cytotoxicity against mouse P388 cells at 100 ug/mL1996Journal of natural products, Jul, Volume: 59, Issue:7
DNA topoisomerase I inhibitors: cytotoxic flavones from Lethedon tannaensis.
AID310882Inhibition of HIV1 replication2007Bioorganic & medicinal chemistry letters, Mar-01, Volume: 17, Issue:5
Simple criterion for selection of flavonoid compounds with anti-HIV activity.
AID1572024Inhibition of human IP6K2 using insP6 as substrate preincubated for 15 mins followed by substrate and measured after 30 mins by TR-FRET assay2019Journal of medicinal chemistry, 02-14, Volume: 62, Issue:3
Inhibition of Inositol Polyphosphate Kinases by Quercetin and Related Flavonoids: A Structure-Activity Analysis.
AID598381Activity at CYP1A1 in microsomes of human MDA-MB468 cells assessed as parent compound remaining after 20 mins by HPLC analysis2011Bioorganic & medicinal chemistry, May-01, Volume: 19, Issue:9
Comparative CYP1A1 and CYP1B1 substrate and inhibitor profile of dietary flavonoids.
AID466937Inhibition of Trypanosoma cruzi trans-sialidase containing catalytic domain (N58F, R200K) and lectin-like domain (S495 K, V496G, E520K, D593G, I597D, H599R) mutation expressed in Escherichia coli JM109 assessed as MuNANA substrate hydrolysis in presence o2010Bioorganic & medicinal chemistry, Feb-15, Volume: 18, Issue:4
Potent inhibitor scaffold against Trypanosoma cruzi trans-sialidase.
AID1572025Inhibition of human IPMK using insP3 as substrate preincubated for 15 mins followed by substrate and measured after 30 mins by TR-FRET assay2019Journal of medicinal chemistry, 02-14, Volume: 62, Issue:3
Inhibition of Inositol Polyphosphate Kinases by Quercetin and Related Flavonoids: A Structure-Activity Analysis.
AID265763Inhibition of FabZ at 100 uM2006Journal of medicinal chemistry, Jun-01, Volume: 49, Issue:11
Inhibition of Plasmodium falciparum fatty acid biosynthesis: evaluation of FabG, FabZ, and FabI as drug targets for flavonoids.
AID358174Inhibition of p56 lck1992Journal of natural products, Nov, Volume: 55, Issue:11
Protein-tyrosine kinase inhibition: mechanism-based discovery of antitumor agents.
AID1546536Cytotoxicity against human HeLa cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID354855Cytotoxicity against human KB cells1996Journal of natural products, Jul, Volume: 59, Issue:7
DNA topoisomerase I inhibitors: cytotoxic flavones from Lethedon tannaensis.
AID1546528Cytotoxicity against human SK-MEL-2 cells by SRB assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID1698520Cytotoxicity against human MV4-11 cells assessed as reduction in cell viability after 72 hrs by MTT assay2020Journal of natural products, 10-23, Volume: 83, Issue:10
Biological Evaluation of Selected Flavonoids as Inhibitors of MNKs Targeting Acute Myeloid Leukemia.
AID354856Inhibition of calf thymus DNA topoisomerase 1 assessed as minimum efficient dose1996Journal of natural products, Jul, Volume: 59, Issue:7
DNA topoisomerase I inhibitors: cytotoxic flavones from Lethedon tannaensis.
AID280036Cytotoxicity against human Lu1 cells2007Journal of natural products, Mar, Volume: 70, Issue:3
Cytotoxic constituents from the fruiting branches of Callicarpa americana collected in southern Florida.
AID280037Cytotoxicity against human Col2 cells2007Journal of natural products, Mar, Volume: 70, Issue:3
Cytotoxic constituents from the fruiting branches of Callicarpa americana collected in southern Florida.
AID397122Inhibition of HIV1 RT
AID404692Inhibition of human salivary alpha-amylase2008Journal of medicinal chemistry, Jun-26, Volume: 51, Issue:12
Flavonoids for controlling starch digestion: structural requirements for inhibiting human alpha-amylase.
AID1546531Cytotoxicity against human HCT15 cells by SRB assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID1546527Cytotoxicity against human A549 cells by SRB assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID280040Cytotoxicity against human HUVEC cells2007Journal of natural products, Mar, Volume: 70, Issue:3
Cytotoxic constituents from the fruiting branches of Callicarpa americana collected in southern Florida.
AID265764Inhibition of FabI at 100 uM2006Journal of medicinal chemistry, Jun-01, Volume: 49, Issue:11
Inhibition of Plasmodium falciparum fatty acid biosynthesis: evaluation of FabG, FabZ, and FabI as drug targets for flavonoids.
AID402596Cytotoxicity against human A2780 cells2004Journal of natural products, Jun, Volume: 67, Issue:6
Cytotoxic triterpenoids from Acridocarpus vivy from the Madagascar rain forest.
AID977599Inhibition of sodium fluorescein uptake in OATP1B1-transfected CHO cells at an equimolar substrate-inhibitor concentration of 10 uM2013Molecular pharmacology, Jun, Volume: 83, Issue:6
Structure-based identification of OATP1B1/3 inhibitors.
AID1546537Cytotoxicity against human MCF7 cells assessed as reduction in cell viability incubated for 48 hrs by MTT assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID1546529Cytotoxicity against human SKOV3 cells by SRB assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID1223551Drug metabolism in Wistar rat urine/feces treated with 750 mg/kg, po of 5,7,4'-trimethoxyflavone by LC-MS and LC-MS/MS analysis2012Drug metabolism and disposition: the biological fate of chemicals, Dec, Volume: 40, Issue:12
Pharmacokinetics, bioavailability, tissue distribution, excretion, and metabolite identification of methoxyflavones in Kaempferia parviflora extract in rats.
AID1698502Inhibition of N-terminal GST-tagged recombinant human full length MNK2 expressed in baculovirus expression system incubated for 1 hr by Kinase Tracer 236 based LanthaScreen Eu kinase binding assay relative to control2020Journal of natural products, 10-23, Volume: 83, Issue:10
Biological Evaluation of Selected Flavonoids as Inhibitors of MNKs Targeting Acute Myeloid Leukemia.
AID1698501Inhibition of N-terminal GST-tagged recombinant human full length MNK2 expressed in baculovirus expression system at 10 uM incubated for 1 hr by Kinase Tracer 236 based LanthaScreen Eu kinase binding assay relative to control2020Journal of natural products, 10-23, Volume: 83, Issue:10
Biological Evaluation of Selected Flavonoids as Inhibitors of MNKs Targeting Acute Myeloid Leukemia.
AID1698519Cytotoxicity against human MOLM-13 cells assessed as reduction in cell viability after 72 hrs by MTT assay2020Journal of natural products, 10-23, Volume: 83, Issue:10
Biological Evaluation of Selected Flavonoids as Inhibitors of MNKs Targeting Acute Myeloid Leukemia.
AID265761Antiplasmodial activity against chloroquine-sensitive Plasmodium falciparum NF542006Journal of medicinal chemistry, Jun-01, Volume: 49, Issue:11
Inhibition of Plasmodium falciparum fatty acid biosynthesis: evaluation of FabG, FabZ, and FabI as drug targets for flavonoids.
AID265765Inhibition of FabG at 100 uM2006Journal of medicinal chemistry, Jun-01, Volume: 49, Issue:11
Inhibition of Plasmodium falciparum fatty acid biosynthesis: evaluation of FabG, FabZ, and FabI as drug targets for flavonoids.
AID1572026Selectivity ratio of IC50 for human IPMK to IC50 for human IP6K22019Journal of medicinal chemistry, 02-14, Volume: 62, Issue:3
Inhibition of Inositol Polyphosphate Kinases by Quercetin and Related Flavonoids: A Structure-Activity Analysis.
AID1756088Inhibition of recombinant His-tagged human FLT3 (564 to 958 residues) expressed in baculovirus expression system using tyr 02 as substrate incubated for 1 hr by Z'-LYTE assay2021Journal of natural products, 01-22, Volume: 84, Issue:1
Investigation of Selected Flavonoid Derivatives as Potent FLT3 Inhibitors for the Potential Treatment of Acute Myeloid Leukemia.
AID1546530Cytotoxicity against human XF498 cells by SRB assay2020Bioorganic & medicinal chemistry, 01-01, Volume: 28, Issue:1
Artemisia: a promising plant for the treatment of cancer.
AID1745855NCATS anti-infectives library activity on the primary C. elegans qHTS viability assay2023Disease models & mechanisms, 03-01, Volume: 16, Issue:3
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
AID1745854NCATS anti-infectives library activity on HEK293 viability as a counter-qHTS vs the C. elegans viability qHTS2023Disease models & mechanisms, 03-01, Volume: 16, Issue:3
In vivo quantitative high-throughput screening for drug discovery and comparative toxicology.
AID1159607Screen for inhibitors of RMI FANCM (MM2) intereaction2016Journal of biomolecular screening, Jul, Volume: 21, Issue:6
A High-Throughput Screening Strategy to Identify Protein-Protein Interaction Inhibitors That Block the Fanconi Anemia DNA Repair Pathway.
AID1159550Human Phosphogluconate dehydrogenase (6PGD) Inhibitor Screening2015Nature cell biology, Nov, Volume: 17, Issue:11
6-Phosphogluconate dehydrogenase links oxidative PPP, lipogenesis and tumour growth by inhibiting LKB1-AMPK signalling.
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (66)

TimeframeStudies, This Drug (%)All Drugs %
pre-19901 (1.52)18.7374
1990's11 (16.67)18.2507
2000's13 (19.70)29.6817
2010's31 (46.97)24.3611
2020's10 (15.15)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 31.04

According to the monthly volume, diversity, and competition of internet searches for this compound, as well the volume and growth of publications, there is estimated to be moderate demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index31.04 (24.57)
Research Supply Index4.28 (2.92)
Research Growth Index5.64 (4.65)
Search Engine Demand Index39.34 (26.88)
Search Engine Supply Index2.00 (0.95)

This Compound (31.04)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials0 (0.00%)5.53%
Reviews4 (5.63%)6.00%
Case Studies0 (0.00%)4.05%
Observational0 (0.00%)0.25%
Other67 (94.37%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]