Page last updated: 2024-11-04

trigonelline

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

Description

trigonelline: in hydra among other organisms; RN given refers to hydroxide inner salt; structure [Medical Subject Headings (MeSH), National Library of Medicine, extracted Dec-2023]

N-methylnicotinic acid : A pyridinium ion consisting of nicotinic acid having a methyl substituent on the pyridine nitrogen. [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]

N-methylnicotinate : An iminium betaine that is the conjugate base of N-methylnicotinic acid, arising from deprotonation of the carboxy group. [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 CID5570
CHEMBL ID350675
CHEBI ID18123
SCHEMBL ID195666
MeSH IDM0054371

Synonyms (82)

Synonym
MLS002153895
smr001233244
1-methylpyridinium-3-carboxylate
1-methyl-3-pyridiniumcarboxylate
coffearin
nicotinic acid n-methylbetaine
n-methyl-nicotinate
trigonellin
n'-methylnicotinate
3-carboxy-1-methylpyridinium hydroxide inner salt
caffearine
CHEBI:18123 ,
betain nicotinate
pyridinium, 3-carboxy-1-methyl-, hydroxide, inner salt
SDCCGMLS-0066739.P001
n-methylnicotinic acid
1-methylpyridin-1-ium-3-carboxylic acid
pyridinium, 3-carboxy-1-methyl-, inner salt
AB00052974
3-carboxy-1-methylpyridinium hydroxide, inner salt
ccris 1332
coffearine
einecs 208-620-5
trigenolline
brn 3905114
gynesine
trigenelline
C01004
n-methylnicotinate
1-methylpyridinio-3-carboxylate
trigonelline
535-83-1
caffearin
betaine nicotinate
NCGC00095649-01
SPECTRUM1500880
NCGC00095649-02
NCGC00095649-03
NCGC00095649-04
1-methylnicotinate
nsc714350
nsc-714350
AKOS005067859
CHEMBL350675
1-methyl-nicotinic acid anion(trigonelline)
1-methylpyridin-1-ium-3-carboxylate
HMS2096H08
5-22-02-00143 (beilstein handbook reference)
hsdb 7684
unii-3nq9n60i00
3nq9n60i00 ,
HMS2234K22
CCG-38517
FT-0689338
HMS3371K21
trigonelline [mi]
trigonelline [usp-rs]
trigonelline (constituent of fenugreek seed) [dsc]
trigonelline [hsdb]
3-carboxy-1-methylpyridinium inner salt
SCHEMBL195666
W-105723
AC-34290
WWNNZCOKKKDOPX-UHFFFAOYSA-N
n-methylnicotinic acid betaine
DTXSID2026230 ,
mfcd00054262
n'-methylnicotinic acid
3-carboxy-1-methyl-pyridinium hydroxide inner salt
3-carboxy-1-methylpyridin-1-ium hydroxide
trigonelline,(s)
AS-17722
Q928965
A14825
HY-N0414
CS-0008944
NCGC00095649-07
bdbm50548713
3-carboxy-1-methylpyridinium, hydroxide, inner salt
trigonelline (usp-rs)
dtxcid906230
trigonelline (constituent of fenugreek seed)

Research Excerpts

Overview

Trigonelline (TRG) is a pyridine alkaloid that has various pharmacological effects including hypoglycemic, neuroprotective and memory-improving properties. It occurs naturally in high concentrations in coffee (up to 7.2 g/kg) and coffee by-products such as coffee leaves, flowers, cherry husks or pulp.

ExcerptReferenceRelevance
"Trigonelline is a plant alkaloid, a significant constituent in coffee, and has shown health benefits in several disorders."( Multiple targets of Nrf 2 inhibitor; trigonelline in combating urethane-induced lung cancer by caspase-executioner apoptosis, cGMP and limitation of cyclin D1 and Bcl2.
Abo-Youssef, AM; Hamzawy, MA; Khalaf, MM; Malak, MN, 2022
)
1.72
"Trigonelline is a bioactive pyridine alkaloid that occurs naturally in high concentrations in coffee (up to 7.2 g/kg) and coffee by-products (up to 62.6 g/kg) such as coffee leaves, flowers, cherry husks or pulp, parchment, silver skin, and spent grounds. "( Risk Assessment of Trigonelline in Coffee and Coffee By-Products.
Franke, H; Konstantinidis, N; Lachenmeier, DW; Schwarz, S, 2023
)
2.68
"Trigonelline (TRG) is a pyridine alkaloid that has various pharmacological effects including hypoglycemic, neuroprotective and memory-improving properties."( Trigonelline through the Attenuation of Oxidative Stress Exerts Antidepressant- and Anxiolytic-Like Effects in a Mouse Model of Maternal Separation Stress.
Amini-Khoei, H; Bijad, E; Habibian Dehkordi, S; Lorigooini, Z; Sadeghi Dehsahraei, K, 2020
)
2.72
"Trigonelline is a plant alkaloid that has generated interest for its neuroprotective roles in brain pathology. "( Trigonelline protects hippocampal neurons from oxygen-glucose deprivation-induced injury through activating the PI3K/Akt pathway.
Fan, X; Jiang, C; Li, J; Qiu, Z; Su, Y; Wang, K; Xue, S; Yao, L, 2020
)
3.44
"Trigonelline is a potent phytochemical present in fenugreek, which has strong anti-oxidant and phytoestrogenic activities. "( Trigonelline Demonstrated Ameliorative Effects in Dexamethasone Induced Osteoporotic Rats.
Akhtar, M; Ishaq, M; Najmi, AK; Rathi, A, 2020
)
3.44
"Trigonelline is an alkaloid with neuroprotective activity."( Possible Involvement of N-methyl-D-aspartate Receptor (NMDA-R) in the Antidepressant- like Effect of Trigonelline in Male Mice.
Amini-Khoei, H; Anjomshoa, M; Bagheri, E; Boroujeni, SN; Lorigooini, Z, 2020
)
1.5
"Trigonelline is a pyridine alkaloid found in fenugreek seeds and coffee beans. "( Quantitative determination of trigonelline in mouse serum by means of hydrophilic interaction liquid chromatography-MS/MS analysis: Application to a pharmacokinetic study.
Bartosińska, E; Jacyna, J; Kaliszan, R; Patejko, M; Siluk, D; Szczesny, D, 2018
)
2.21
"Trigonelline (TRG) is a naturally occurring alkaloid, commonly isolated from fenugreek and coffee beans."( Trigonelline insulates against oxidative stress, proinflammatory cytokines and restores BDNF levels in lipopolysaccharide induced cognitive impairment in adult mice.
Chowdhury, AA; Gawali, NB; Juvekar, AR; Munshi, R, 2018
)
2.64
"Trigonelline is a plant alkaloid and a major component of coffee and fenugreek with anti-diabetic, antioxidant, anti-inflammatory, and neuroprotective effects."( Trigonelline mitigates lipopolysaccharide-induced learning and memory impairment in the rat due to its anti-oxidative and anti-inflammatory effect.
Alavi, M; Baluchnejadmojarad, T; Esmaeil-Jamaat, E; Khalili, M; Roghani, M, 2018
)
2.64
"Trigonelline is an alkaloid found in medicinal plants such as fenugreek seeds and coffee beans with neuroprotective potential and according to existing evidences, a favorable agent for treatment of neurodegenerative disorders."( Trigonelline protects hippocampus against intracerebral Aβ(1-40) as a model of Alzheimer's disease in the rat: insights into underlying mechanisms.
Baluchnejadmojarad, T; Fahanik-Babaei, J; Nikbakht, F; Roghani, M, 2019
)
2.68
"Trigonelline is an alkaloid with several therapeutic potential properties."( Inflammatory responses bridge comorbid cardiac disorder in experimental model of IBD induced by DSS: protective effect of the trigonelline.
Amini-Khoei, H; Balali-Dehkordi, S; Lorigooini, Z; Omidi-Ardali, H; Soltani, A, 2019
)
1.44
"Trigonelline is a natural alkaloid mainly found in Trigonella Foenum Graecum (fenugreek) Fabaceae and other edible plants with a variety of medicinal applications. "( Trigonelline attenuates the adipocyte differentiation and lipid accumulation in 3T3-L1 cells.
Arasu, MV; Choi, GJ; Choi, KC; Ilavenil, S; Kim, DH; Lee, JC; Mayakrishnan, V; Park, HS; Roh, SG, 2014
)
3.29
"Trigonelline is a well-known precursor of flavor/aroma compounds in coffee and undergoes significant degradation during roasting. "( Alkylpyridiniums. 1. Formation in model systems via thermal degradation of trigonelline.
Hau, J; Stadler, RH; Varga, N; Vera, FA; Welti, DH, 2002
)
1.99

Effects

Trigonelline has hypoglycemic, hypolipidemic, neuroprotective, antimigraine, sedative, memory-improving, antibacterial, antiviral, and anti-tumor activities. It has been shown to reduce diabetic auditory neuropathy and platelet aggregation.

ExcerptReferenceRelevance
"Trigonelline (TRL) has been shown to lower blood sugar and cholesterol levels, promote nerve regeneration, and exert anti-cancer and sedative properties."( Trigonelline induces autophagy to protect mesangial cells in response to high glucose via activating the miR-5189-5p-AMPK pathway.
Cao, X; Chen, C; Ma, J; Miao, CS; Shi, Y; Zhang, H; Zhang, M, 2021
)
2.79
"Trigonelline so far has not been reported from B."( Unraveling the active hypoglycemic agent trigonelline in Balanites aegyptiaca date fruit using metabolite fingerprinting by NMR.
Farag, MA; Porzel, A; Wessjohann, LA, 2015
)
1.4
"Trigonelline has hypoglycemic, hypolipidemic, neuroprotective, antimigraine, sedative, memory-improving, antibacterial, antiviral, and anti-tumor activities, and it has been shown to reduce diabetic auditory neuropathy and platelet aggregation."( Trigonelline: a plant alkaloid with therapeutic potential for diabetes and central nervous system disease.
Chan, L; Zhou, J; Zhou, S, 2012
)
2.54

Actions

Trigonelline prevented the increase in proinflammatory cytokines and reduced interleukin-10 level in placenta of diabetic pregnant mice. Trig onelline inhibit iodixanol-induced MC-related pseudo-allergic reactions.

ExcerptReferenceRelevance
"Trigonelline inhibit iodixanol-induced MC-related pseudo-allergic reactions in vitro and in vivo."( Iodixanol activation of mast cells: Implications in the pathogenesis of iodixanol-induced delayed cutaneous adverse reactions.
Chen, L; Hao, G; Hu, C; Hu, S; Yang, S; Zou, W, 2022
)
1.44
"Trigonelline prevented the increase in proinflammatory cytokines and reduced interleukin-10 level in placenta of diabetic pregnant mice."( Trigonelline Inhibits Inflammation and Protects β Cells to Prevent Fetal Growth Restriction during Pregnancy in a Mouse Model of Diabetes.
Du, XH; Qian, GS; Zhang, Z; Zhou, JY, 2017
)
2.62
"The trigonelline content was lower than that of mimosine in all organs."( The co-occurrence of two pyridine alkaloids, mimosine and trigonelline, in Leucaena leucocephala.
Ashihara, H; Kato, M; Ogita, S; Watanabe, S,
)
0.86

Treatment

Trigonelline-treated LPS-challenged rats showed improved spatial recognition memory in Y maze, discrimination ratio in novel object discrimination test, and retention and recall in passive avoidance paradigm. Treatment also resulted in a 1.6-fold increase in fork rate.

ExcerptReferenceRelevance
"Trigonelline-treated LPS-challenged rats showed improved spatial recognition memory in Y maze, discrimination ratio in novel object discrimination test, and retention and recall in passive avoidance paradigm."( Trigonelline mitigates lipopolysaccharide-induced learning and memory impairment in the rat due to its anti-oxidative and anti-inflammatory effect.
Alavi, M; Baluchnejadmojarad, T; Esmaeil-Jamaat, E; Khalili, M; Roghani, M, 2018
)
2.64
"Trigonelline treatment restored the above mentioned parameters."( Trigonelline inhibits caspase 3 to protect β cells apoptosis in streptozotocin-induced type 1 diabetic mice.
Du, X; Liu, L; Zhang, Z; Zhou, J, 2018
)
2.64
"Trigonelline treatment also resulted in a 1.6-fold increase in fork rate (13.8 microm h(-1)) compared with the control (8.4 m h(-1))."( Inactivation of DNA replication origins by the cell cycle regulator, trigonelline, in root meristems of Lactuca sativa.
Bitonti, MB; Francis, D; Innocenti, AM; Mazzuca, S, 2000
)
1.26
"Treatment with trigonelline (30 microM) increased the percentage of cells with neurites at 3 and 6 d after treatment."( Trigonelline-induced neurite outgrowth in human neuroblastoma SK-N-SH cells.
Hattori, M; Komatsu, K; Nakamura, N; Tohda, C, 1999
)
2.09

Toxicity

ExcerptReferenceRelevance
" The flavonoids are gaining critical attention in the management of PD due to the toxic effects of the synthetic drugs."( Naringin Exhibits Neuroprotection Against Rotenone-Induced Neurotoxicity in Experimental Rodents.
Agrawal, N; Garabadu, D, 2020
)
0.56

Pharmacokinetics

ExcerptReferenceRelevance
" The method was applied to monitor the plasma appearance and urinary excretion and to determine pharmacokinetic parameters of the bioactive pyridines as well as their metabolites in a clinical human intervention study with healthy volunteers (six women, seven men) after oral administration of 350 mL of a standard coffee beverage."( Development of a hydrophilic liquid interaction chromatography-high-performance liquid chromatography-tandem mass spectrometry based stable isotope dilution analysis and pharmacokinetic studies on bioactive pyridines in human plasma and urine after coffee
Eggers, R; Hauner, H; Hofmann, T; Lang, R; Schmiech, L; Skurk, T; Wahl, A; Yagar, EF, 2010
)
0.36
" This study developed an assay combining hydrophilic interaction chromatography with ultra performance liquid chromatography (HILIC-UPLC) for the quantification of Tr in rat plasma to determine its pharmacokinetic behavior."( Development of a hydrophilic interaction chromatography-UPLC assay to determine trigonelline in rat plasma and its application in a pharmacokinetic study.
Cheng, ZX; Lin, N; Liu, ZQ; Wu, JJ, 2013
)
0.62
" Pharmacokinetic parameters were determined using the standard non-compartmental method and calculated using Practical Pharmacokinetic Program Version 87/97."( Development of a hydrophilic interaction chromatography-UPLC assay to determine trigonelline in rat plasma and its application in a pharmacokinetic study.
Cheng, ZX; Lin, N; Liu, ZQ; Wu, JJ, 2013
)
0.62
" Chlorogenic acid-derived metabolites were found to be separated into two groups showing different pharmacokinetic properties."( Bioappearance and pharmacokinetics of bioactives upon coffee consumption.
Beusch, A; Dieminger, N; Dunkel, A; Hauner, H; Hofmann, T; Lang, R; Lee, YM; Skurk, T; Suess, B; Wahl, A, 2013
)
0.39
" Trigonelline and N-methylpyridinium absorption curves and 24-h urinary excretion reflect the daily consumption of different servings of coffee or CBPCC, showing also significant differences in main pharmacokinetic parameters."( Absorption, Pharmacokinetics, and Urinary Excretion of Pyridines After Consumption of Coffee and Cocoa-Based Products Containing Coffee in a Repeated Dose, Crossover Human Intervention Study.
Antonini, M; Bonadonna, R; Bresciani, L; Brighenti, F; Dei Cas, A; Del Rio, D; Martini, D; Mena, P; Rosi, A; Tassotti, M, 2020
)
1.47

Bioavailability

Trigonelline showed a middle rate of absorption and fast rate of elimination in rabbit. It is unknown whether these protective effects are related to caffeine (CAF) or to its combination with other common and/or highly bioavailable coffee compounds.

ExcerptReferenceRelevance
"Trigonelline showed a middle rate of absorption and fast rate of elimination in rabbit."( [Determination of trigonelline by HPLC and study on its pharmacokinetics].
Hattori, M; Lu, XY; Qu, Y; Wang, XY; Zhang, XH; Zhao, HQ, 2003
)
2.1
" The absolute bioavailability of Tr alone reached 57."( Development of a hydrophilic interaction chromatography-UPLC assay to determine trigonelline in rat plasma and its application in a pharmacokinetic study.
Cheng, ZX; Lin, N; Liu, ZQ; Wu, JJ, 2013
)
0.62
" The bioavailability of stand-alone Tr and that of Tr in MECB were both good."( Development of a hydrophilic interaction chromatography-UPLC assay to determine trigonelline in rat plasma and its application in a pharmacokinetic study.
Cheng, ZX; Lin, N; Liu, ZQ; Wu, JJ, 2013
)
0.62
" The bioavailability and the distribution of each compound and its metabolites also contribute to coffee mechanisms of action."( Coffee components and cardiovascular risk: beneficial and detrimental effects.
Buscemi, S; Galvano, F; Godos, J; Grosso, G; Li Volti, G; Marventano, S; Pluchinotta, FR, 2014
)
0.4
" The alkaloids caffeine and trigonelline, as well as the polyphenol chlorogenic acid, are some of the most important bioactive organic compounds of these beverages, displaying high levels in both espresso and common brews and/or increased bioavailability after consumption."( Drinking for protection? Epidemiological and experimental evidence on the beneficial effects of coffee or major coffee compounds against gastrointestinal and liver carcinogenesis.
Barbisan, LF; Chaves, MAG; Cogliati, B; Moreno, FS; Rocha, AB; Romualdo, GR; Vinken, M, 2019
)
0.81
" It is currently unknown whether these protective effects are related to caffeine (CAF), or to its combination with other common and/or highly bioavailable coffee compounds, such as trigonelline (TRI) and chlorogenic acid (CGA)."( The combination of coffee compounds attenuates early fibrosis-associated hepatocarcinogenesis in mice: involvement of miRNA profile modulation.
Barbisan, LF; Cogliati, B; da Silva, TC; Evangelista, AF; Moreno, FS; Prata, GB; Reis, RM; Romualdo, GR; Vinken, M, 2020
)
0.75
" Considering its high bioavailability in humans and the results of this study, trigonelline may have potential as an anti-obesity compound."( Trigonelline induces browning in 3T3-L1 white adipocytes.
Choi, M; Mukherjee, S; Yun, JW, 2021
)
2.29
" This investigation shows that the absorption rate increased, whereas distribution and elimination processes slowed down in diabetic rats compared with normal rats."( A novel UPLC-MS/MS method for simultaneous quantification of trigonelline, 4-hydroxyisoleucine, and diosgenin from Trigonella foenum-graecum extract: Application to pharmacokinetic study in healthy and type 2 diabetic rats.
Banerjee, D; Dubey, SK; Katiyar, C; Krishna, KV; Narwaria, A; Taliyan, R; Tandon, N; Wadhwa, G; Yadav, SS, 2022
)
0.96

Dosage Studied

ExcerptRelevanceReference
" The results demonstrated that the procedure is accurate, precise, specific and reproducible (percent relative standard deviation <2%), while being simple and less time consuming and hence can be suitably applied for the estimation of trigonelline in different dosage forms and dissolution studies."( Simple, sensitive, selective and validated spectrophotometric methods for the estimation of a biomarker trigonelline from polyherbal gels.
Ahmad, FJ; Chopra, S; Khar, RK; Motwani, SK, 2007
)
0.74
[information is derived through text-mining from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Roles (3)

RoleDescription
plant metaboliteAny eukaryotic metabolite produced during a metabolic reaction in plants, the kingdom that include flowering plants, conifers and other gymnosperms.
food componentA physiological role played by any substance that is distributed in foodstuffs. It includes materials derived from plants or animals, such as vitamins or minerals, as well as environmental contaminants.
human urinary metaboliteAny metabolite (endogenous or exogenous) found in human urine samples.
[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
iminium betaine
alkaloidAny of the naturally occurring, basic nitrogen compounds (mostly heterocyclic) occurring mostly in the plant kingdom, but also found in bacteria, fungi, and animals. By extension, certain neutral compounds biogenetically related to basic alkaloids are also classed as alkaloids. Amino acids, peptides, proteins, nucleotides, nucleic acids, amino sugars and antibiotics are not normally regarded as alkaloids. Compounds in which the nitrogen is exocyclic (dopamine, mescaline, serotonin, etc.) are usually classed as amines rather than alkaloids.
[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 (2)

PathwayProteinsCompounds
trigonelline biosynthesis06
Nuclear factor, erythroid-derived 2, like 2 signaling pathway02

Protein Targets (10)

Potency Measurements

ProteinTaxonomyMeasurementAverage (µ)Min (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Chain A, Beta-lactamaseEscherichia coli K-12Potency5.62340.044717.8581100.0000AID485294
Chain A, Putative fructose-1,6-bisphosphate aldolaseGiardia intestinalisPotency35.39730.140911.194039.8107AID2451
67.9K proteinVaccinia virusPotency12.58930.00018.4406100.0000AID720580
IDH1Homo sapiens (human)Potency3.66260.005210.865235.4813AID686970
chromobox protein homolog 1Homo sapiens (human)Potency89.12510.006026.168889.1251AID540317
ubiquitin carboxyl-terminal hydrolase 2 isoform aHomo sapiens (human)Potency12.58930.65619.452025.1189AID927
Disintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)Potency12.58931.584913.004325.1189AID927
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Inhibition Measurements

ProteinTaxonomyMeasurementAverageMin (ref.)Avg (ref.)Max (ref.)Bioassay(s)
Gamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)Ki0.01300.00010.04380.1630AID1682317
Gamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)Ki0.01300.00010.04380.1630AID1682317
Acetylcholinesterase Bos taurus (cattle)IC50 (µMol)233.00000.00000.61068.7000AID1682318
[prepared from compound, protein, and bioassay information from National Library of Medicine (NLM), extracted Dec-2023]

Biological Processes (43)

Processvia Protein(s)Taxonomy
inhibitory synapse assemblyGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
monoatomic ion transportGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
gamma-aminobutyric acid signaling pathwayGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
cellular response to histamineGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
positive regulation of epidermal growth factor receptor signaling pathwayDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
response to hypoxiaDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
neutrophil mediated immunityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
germinal center formationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of leukocyte chemotaxisDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
proteolysisDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
membrane protein ectodomain proteolysisDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cell adhesionDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
Notch receptor processingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of cell population proliferationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
response to xenobiotic stimulusDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of T cell chemotaxisDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
protein processingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
signal releaseDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
B cell differentiationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of cell growthDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of cell migrationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
negative regulation of transforming growth factor beta receptor signaling pathwayDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
response to lipopolysaccharideDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of chemokine productionDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of tumor necrosis factor productionDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
regulation of mast cell apoptotic processDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
T cell differentiation in thymusDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cell adhesion mediated by integrinDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
wound healing, spreading of epidermal cellsDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
amyloid precursor protein catabolic processDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of blood vessel endothelial cell migrationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of cyclin-dependent protein serine/threonine kinase activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of epidermal growth factor-activated receptor activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of epidermal growth factor receptor signaling pathwayDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
spleen developmentDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cell motilityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
defense response to Gram-positive bacteriumDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cellular response to high density lipoprotein particle stimulusDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
commissural neuron axon guidanceDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
negative regulation of cold-induced thermogenesisDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of G1/S transition of mitotic cell cycleDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of tumor necrosis factor-mediated signaling pathwayDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
positive regulation of vascular endothelial cell proliferationDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
Notch signaling pathwayDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Molecular Functions (18)

Processvia Protein(s)Taxonomy
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
ligand-gated monoatomic ion channel activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
GABA-gated chloride ion channel activityGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
amyloid-beta bindingAcetylcholinesterase Bos taurus (cattle)
protein bindingAcetylcholinesterase Bos taurus (cattle)
endopeptidase activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
metalloendopeptidase activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
Notch bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
interleukin-6 receptor bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
integrin bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
protein bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
peptidase activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
metallopeptidase activityDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
SH3 domain bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cytokine bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
PDZ domain bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
tumor necrosis factor bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
metal ion bindingDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
metalloendopeptidase activity involved in amyloid precursor protein catabolic processDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Ceullar Components (20)

Processvia Protein(s)Taxonomy
cytoplasmic vesicle membraneGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
postsynaptic specialization membraneGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit alpha-1Bos taurus (cattle)
plasma membraneGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
postsynaptic membraneGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
chloride channel complexGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
GABA-A receptor complexGamma-aminobutyric acid receptor subunit beta-1Bos taurus (cattle)
synapseAcetylcholinesterase Bos taurus (cattle)
side of membraneAcetylcholinesterase Bos taurus (cattle)
cell-cell junctionDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
focal adhesionDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
ruffle membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
Golgi membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cytoplasmDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
endoplasmic reticulum lumenDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cytosolDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
plasma membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
cell surfaceDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
actin cytoskeletonDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
apical plasma membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
membrane raftDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
plasma membraneDisintegrin and metalloproteinase domain-containing protein 17Homo sapiens (human)
[Information is prepared from geneontology information from the June-17-2024 release]

Bioassays (31)

Assay IDTitleYearJournalArticle
AID504812Inverse Agonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588501High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Lethal Factor Protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588497High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain F protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID1745845Primary qHTS for Inhibitors of ATXN expression
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Current protocols in cytometry, Oct, Volume: Chapter 13Microsphere-based flow cytometry protease assays for use in protease activity detection and high-throughput screening.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2006Cytometry. Part A : the journal of the International Society for Analytical Cytology, May, Volume: 69, Issue:5
Microsphere-based protease assays and screening application for lethal factor and factor Xa.
AID588499High-throughput multiplex microsphere screening for inhibitors of toxin protease, specifically Botulinum neurotoxin light chain A protease, MLPCN compound set2010Assay and drug development technologies, Feb, Volume: 8, Issue:1
High-throughput multiplex flow cytometry screening for botulinum neurotoxin type a light chain protease inhibitors.
AID651635Viability Counterscreen for Primary qHTS for Inhibitors of ATXN expression
AID504810Antagonists of the Thyroid Stimulating Hormone Receptor: HTS campaign2010Endocrinology, Jul, Volume: 151, Issue:7
A small molecule inverse agonist for the human thyroid-stimulating hormone receptor.
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.
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.
AID1682319Induction of dopamine release in rat PC-12 cells at 4.977 uM by luminescence assay relative to control2020Bioorganic & medicinal chemistry, 12-15, Volume: 28, Issue:24
Pyridine alkaloids with activity in the central nervous system.
AID15557Distribution of compound in mice brain was measured after 2 hr1989Journal of medicinal chemistry, Mar, Volume: 32, Issue:3
A dihydropyridine carrier system for sustained delivery of 2',3'-dideoxynucleosides to the brain.
AID1256313Effect on glucose-stimulated insulin secretion in rat INS-1E cells at 10'-12 to 10'-6 M after 60 mins in presence of 16.7 mM glucose2015Journal of natural products, Oct-23, Volume: 78, Issue:10
Cafestol, a Bioactive Substance in Coffee, Stimulates Insulin Secretion and Increases Glucose Uptake in Muscle Cells: Studies in Vitro.
AID15556Distribution of compound in mice brain was measured after 24 hr r1989Journal of medicinal chemistry, Mar, Volume: 32, Issue:3
A dihydropyridine carrier system for sustained delivery of 2',3'-dideoxynucleosides to the brain.
AID15559Distribution of compound in mice brain was measured after 6 hr1989Journal of medicinal chemistry, Mar, Volume: 32, Issue:3
A dihydropyridine carrier system for sustained delivery of 2',3'-dideoxynucleosides to the brain.
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.
AID15555Distribution of compound in mice brain was measured after 1 hr1989Journal of medicinal chemistry, Mar, Volume: 32, Issue:3
A dihydropyridine carrier system for sustained delivery of 2',3'-dideoxynucleosides to the brain.
AID1682318Inhibition of bovine erythrocytes acetylcholinesterase using acetylthiocholine iodide as substrate measured every 13 secs for 104 secs by Ellman's methods2020Bioorganic & medicinal chemistry, 12-15, Volume: 28, Issue:24
Pyridine alkaloids with activity in the central nervous system.
AID1682096Induction of neurite outgrowth in human SK-N-SH cells assessed as increase in cells with neurites longer than 50 uM incubated for 3 days relative to control2020Bioorganic & medicinal chemistry, 12-15, Volume: 28, Issue:24
Pyridine alkaloids with activity in the central nervous system.
AID1682317Competitive inhibition of bovine GABAA alpha1beta1 expressed in Xenopus laevis oocytes2020Bioorganic & medicinal chemistry, 12-15, Volume: 28, Issue:24
Pyridine alkaloids with activity in the central nervous system.
AID15558Distribution of compound in mice brain was measured after 3 hr1989Journal of medicinal chemistry, Mar, Volume: 32, Issue:3
A dihydropyridine carrier system for sustained delivery of 2',3'-dideoxynucleosides to the brain.
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.
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.
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.
AID1794808Fluorescence-based screening to identify small molecule inhibitors of Plasmodium falciparum apicoplast DNA polymerase (Pf-apPOL).2014Journal of biomolecular screening, Jul, Volume: 19, Issue:6
A High-Throughput Assay to Identify Inhibitors of the Apicoplast DNA Polymerase from Plasmodium falciparum.
AID1794808Fluorescence-based screening to identify small molecule inhibitors of Plasmodium falciparum apicoplast DNA polymerase (Pf-apPOL).
[information is prepared from bioassay data collected from National Library of Medicine (NLM), extracted Dec-2023]

Research

Studies (266)

TimeframeStudies, This Drug (%)All Drugs %
pre-199035 (13.16)18.7374
1990's19 (7.14)18.2507
2000's38 (14.29)29.6817
2010's124 (46.62)24.3611
2020's50 (18.80)2.80
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]

Market Indicators

Research Demand Index: 53.87

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 very strong demand-to-supply ratio for research on this compound.

MetricThis Compound (vs All)
Research Demand Index53.87 (24.57)
Research Supply Index5.65 (2.92)
Research Growth Index5.03 (4.65)
Search Engine Demand Index88.35 (26.88)
Search Engine Supply Index2.03 (0.95)

This Compound (53.87)

All Compounds (24.57)

Study Types

Publication TypeThis drug (%)All Drugs (%)
Trials10 (3.65%)5.53%
Reviews12 (4.38%)6.00%
Case Studies0 (0.00%)4.05%
Observational0 (0.00%)0.25%
Other252 (91.97%)84.16%
[information is prepared from research data collected from National Library of Medicine (NLM), extracted Dec-2023]