catechin and tryptophan

catechin has been researched along with tryptophan in 26 studies

Research

Studies (26)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's9 (34.62)29.6817
2010's13 (50.00)24.3611
2020's4 (15.38)2.80

Authors

AuthorsStudies
Strassburg, CP; Tukey, RH1
Barnes, JC; Bradley, P; Day, NC; Fourches, D; Reed, JZ; Tropsha, A1
Bellows, DS; Clarke, ID; Diamandis, P; Dirks, PB; Graham, J; Jamieson, LG; Ling, EK; Sacher, AG; Tyers, M; Ward, RJ; Wildenhain, J1
Gestwicki, JE; Reinke, AA; Seh, HY1
Fernandes, A; Filipe, P; Hug, GL; Mazière, JC; Morlière, P; Patterson, LK; Santus, R1
Fernandes, A; Filipe, P; Freitas, JP; Hug, GL; Mazière, C; Mazière, JC; Morlière, P; Patterson, LK; Santus, R2
Heck, DE; Laskin, DL; Laskin, JD; Mariano, TM; Mishin, V; Vetrano, AM1
Brueckner, B; Lyko, F; Musch, T; Stopper, H; Stresemann, C1
Bian, HD; Chen, ZF; Liang, H; Pan, YM; Tian, JN; Yu, Q; Zhang, HR1
Chen, JL; Hsieh, KH1
Chen, JL1
Chen, JL; Syu, HJ1
Choi, YH; Cui, J; Du, GH; Gao, XX; Li, ZY; Qin, XM; Tan, XJ; Tian, JS; Xing, J; Zheng, XY; Zhou, YZ1
Dasgupta, S; Ghosh, S; Pandey, NK1
Derreumaux, P; Nguyen, P1
Levine, A; Sun, Y; Yi, L1
Fujita, K; Kokawa, M; Shibata, M; Sugiyama, J; Trivittayasil, V; Tsuta, M; Yoshimura, M1
Chaudhury, S; Dasgupta, S; Ghosh, I; Saha, G1
Green, RJ; Lachmann, P; Mueller-Harvey, I; Ramsay, A; Ropiak, HM1
Balaso Watharkar, R; Chen, W; Ding, T; Liu, D; Lv, R; Ma, X; Wang, W; Ye, X1
Chen, Y; Jin, J; Jing, T; Schwab, W; Song, C; Wan, X; Xu, M; Zhang, N; Zhang, S; Zhao, M1
Heinonen, M; Korpela, B; Pitkänen, L1
Alzamora, R; Arteaga-Pérez, LE; Campos, JV; Fiehn, O; Mardones, C; Pecio, Ł; Pérez, AJ; Riquelme, S; Rubilar, R; Simonet, AM1
Gao, J; Gong, H; Lin, W; Mao, X; Zhao, J1
Bortolami, M; Curulli, A; Di Matteo, P; Feroci, M; Gullifa, G; Materazzi, S; Petrucci, R; Risoluti, R1

Reviews

2 review(s) available for catechin and tryptophan

ArticleYear
Human UDP-glucuronosyltransferases: metabolism, expression, and disease.
    Annual review of pharmacology and toxicology, 2000, Volume: 40

    Topics: Autoimmunity; Chromosome Mapping; Glucuronides; Glucuronosyltransferase; Humans; Hyperbilirubinemia; Neoplasms; Steroids; Terminology as Topic

2000
Understanding amyloid fibril nucleation and aβ oligomer/drug interactions from computer simulations.
    Accounts of chemical research, 2014, Feb-18, Volume: 47, Issue:2

    Topics: Amyloid; Amyloid beta-Peptides; Catechin; Computer Simulation; Drug Antagonism; Humans; Kinetics; Models, Molecular; Molecular Sequence Data; Naphthoquinones; Peptide Fragments; Protein Conformation; Thermodynamics; Tryptophan

2014

Other Studies

24 other study(ies) available for catechin and tryptophan

ArticleYear
Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species.
    Chemical research in toxicology, 2010, Volume: 23, Issue:1

    Topics: Animals; Chemical and Drug Induced Liver Injury; Cluster Analysis; Databases, Factual; Humans; MEDLINE; Mice; Models, Chemical; Molecular Conformation; Quantitative Structure-Activity Relationship

2010
Chemical genetics reveals a complex functional ground state of neural stem cells.
    Nature chemical biology, 2007, Volume: 3, Issue:5

    Topics: Animals; Cell Survival; Cells, Cultured; Mice; Molecular Structure; Neoplasms; Neurons; Pharmaceutical Preparations; Sensitivity and Specificity; Stem Cells

2007
A chemical screening approach reveals that indole fluorescence is quenched by pre-fibrillar but not fibrillar amyloid-beta.
    Bioorganic & medicinal chemistry letters, 2009, Sep-01, Volume: 19, Issue:17

    Topics: Amyloid beta-Peptides; Benzothiazoles; Coloring Agents; Congo Red; Fluorescent Dyes; Indoles; Spectrometry, Fluorescence; Thiazoles

2009
Redox reactions of the urate radical/urate couple with the superoxide radical anion, the tryptophan neutral radical and selected flavonoids in neutral aqueous solutions.
    Free radical research, 2001, Volume: 35, Issue:2

    Topics: Animals; Catechin; Cattle; Flavonoids; Kinetics; Micelles; Oxidation-Reduction; Pulse Radiolysis; Quercetin; Rutin; Solutions; Spectrophotometry, Ultraviolet; Superoxides; Tryptophan; Uric Acid; Water

2001
Mechanisms of flavonoid repair reactions with amino acid radicals in models of biological systems: a pulse radiolysis study in micelles and human serum albumin.
    Biochimica et biophysica acta, 2002, Jun-06, Volume: 1571, Issue:2

    Topics: alpha-MSH; Catechin; Electron Transport; Flavonoids; Free Radicals; Hydrogen-Ion Concentration; Micelles; Models, Biological; Oxidation-Reduction; Pulse Radiolysis; Quercetin; Rutin; Serum Albumin; Tryptophan; Tyrosine; Uric Acid

2002
Mechanisms of flavonoid repair reactions with amino acid radicals in models of biological systems: a pulse radiolysis study in micelles and human serum albumin.
    Biochimica et biophysica acta, 2002, Aug-15, Volume: 1572, Issue:1

    Topics: alpha-MSH; Catechin; Electron Transport; Flavonoids; Free Radicals; Hydrogen-Ion Concentration; Micelles; Models, Biological; Oxidation-Reduction; Pulse Radiolysis; Quercetin; Rutin; Serum Albumin; Tryptophan; Tyrosine; Uric Acid

2002
Characterization of the oxidase activity in mammalian catalase.
    The Journal of biological chemistry, 2005, Oct-21, Volume: 280, Issue:42

    Topics: Animals; Benzidines; Blotting, Western; Catalase; Catechin; Cattle; Cell Line; Coumaric Acids; Cricetinae; Heme; Humans; Hydrogen Peroxide; Indoles; Iron; Kinetics; Laccase; Mice; Mitochondria; Models, Biological; Models, Chemical; Models, Molecular; Oxidoreductases; Oxygen; Peroxidases; Phenethylamines; Protein Binding; Protein Conformation; Spectrophotometry; Temperature; Time Factors; Tryptophan; Vanillic Acid

2005
Functional diversity of DNA methyltransferase inhibitors in human cancer cell lines.
    Cancer research, 2006, Mar-01, Volume: 66, Issue:5

    Topics: Azacitidine; Catechin; Cell Line, Tumor; Cytidine; Decitabine; DNA (Cytosine-5-)-Methyltransferases; DNA Methylation; Enzyme Inhibitors; Humans; Indoles; Jurkat Cells; Phthalimides; Procaine; Propionates; Tryptophan

2006
[Investigation of interaction between catechin and bovine serum albumin by spectroscopic methods].
    Guang pu xue yu guang pu fen xi = Guang pu, 2009, Volume: 29, Issue:11

    Topics: Catechin; Protein Structure, Secondary; Serum Albumin, Bovine; Spectrometry, Fluorescence; Spectroscopy, Fourier Transform Infrared; Tryptophan

2009
Nanochitosan crosslinked with polyacrylamide as the chiral stationary phase for open-tubular capillary electrochromatography.
    Electrophoresis, 2011, Volume: 32, Issue:3-4

    Topics: Acrylamides; Acrylic Resins; alpha-Tocopherol; Capillary Electrochromatography; Catechin; Chitosan; Electroosmosis; Microscopy, Electron, Scanning; Nanoparticles; Nanotechnology; Tryptophan

2011
Molecularly bonded chitosan prepared as chiral stationary phases in open-tubular capillary electrochromatography: comparison with chitosan nanoparticles bonded to the polyacrylamide phase.
    Talanta, 2011, Oct-15, Volume: 85, Issue:5

    Topics: Acrylic Resins; Catechin; Chitosan; Chromatography, Micellar Electrokinetic Capillary; Nanoparticles; Stereoisomerism; Tryptophan

2011
Immobilization of chitosan in sol-gel phases for chiral open-tubular capillary electrochromatography.
    Analytica chimica acta, 2012, Mar-09, Volume: 718

    Topics: Alanine; Capillary Electrochromatography; Catechin; Chitosan; Glycine; Hydrophobic and Hydrophilic Interactions; Phase Transition; Sensitivity and Specificity; Silanes; Stereoisomerism; Tryptophan

2012
An investigation of the antidepressant action of xiaoyaosan in rats using ultra performance liquid chromatography-mass spectrometry combined with metabonomics.
    Phytotherapy research : PTR, 2013, Volume: 27, Issue:7

    Topics: Animals; Antidepressive Agents; Benzoates; Biomarkers; Bridged-Ring Compounds; Catechin; Chalcone; Chromatography, Liquid; Citric Acid; Citric Acid Cycle; Coumaric Acids; Creatine Kinase; Creatinine; Cyclohexanols; Drugs, Chinese Herbal; Flavanones; Fluoxetine; Gallic Acid; Gastrointestinal Tract; Glucosides; Glycine; Hippurates; Ketoglutaric Acids; Kynurenic Acid; Male; Mass Spectrometry; Metabolic Networks and Pathways; Metabolomics; Microbiota; Monoterpenes; Phytotherapy; Plant Extracts; Rats; Rats, Sprague-Dawley; Stress, Psychological; Tryptophan; Tyrosine; Venlafaxine Hydrochloride

2013
(-)-Epicatechin gallate prevents alkali-salt mediated fibrillogenesis of hen egg white lysozyme.
    International journal of biological macromolecules, 2013, Volume: 54

    Topics: Alkalies; Animals; Benzothiazoles; Catechin; Chickens; Circular Dichroism; Guanosine Triphosphate; Hydrogen-Ion Concentration; Kinetics; Microscopy, Fluorescence; Muramidase; Nephelometry and Turbidimetry; Protein Structure, Secondary; Salts; Thiazoles; Time Factors; Tryptophan

2013
Selected drugs that inhibit DNA methylation can preferentially kill p53 deficient cells.
    Oncotarget, 2014, Oct-15, Volume: 5, Issue:19

    Topics: Animals; Anticarcinogenic Agents; Azacitidine; Catechin; Cell Line, Tumor; Cell Proliferation; Cytidine; Decitabine; DNA Methylation; Humans; Lung Neoplasms; Mice; Mice, Inbred C57BL; Mice, Knockout; Mutation; Neoplasm Transplantation; Phthalimides; Tryptophan; Tumor Suppressor Protein p53; Xenograft Model Antitumor Assays

2014
Method of determining the optimal dilution ratio for fluorescence fingerprint of food constituents.
    Bioscience, biotechnology, and biochemistry, 2015, Volume: 79, Issue:4

    Topics: Catechin; Fluorescence; Food Analysis; Multivariate Analysis; Principal Component Analysis; Solutions; Spectrometry, Fluorescence; Tryptophan

2015
EGCG prevents tryptophan oxidation of cataractous ocular lens human γ-crystallin in presence of H2O2.
    International journal of biological macromolecules, 2015, Volume: 77

    Topics: Cataract; Catechin; gamma-Crystallins; Humans; Hydrogen Peroxide; Lens, Crystalline; Middle Aged; Molecular Docking Simulation; Oxidation-Reduction; Protein Conformation; Tryptophan

2015
Identification of Structural Features of Condensed Tannins That Affect Protein Aggregation.
    PloS one, 2017, Volume: 12, Issue:1

    Topics: Anthocyanins; Biflavonoids; Catechin; Flavonoids; Gelatin; Hydrophobic and Hydrophilic Interactions; Kinetics; Molecular Structure; Plant Extracts; Plants, Medicinal; Proanthocyanidins; Protein Aggregates; Protein Binding; Serum Albumin, Bovine; Solutions; Tannins; Tryptophan

2017
Effect of pH-shifting treatment on structural and functional properties of whey protein isolate and its interaction with (-)-epigallocatechin-3-gallate.
    Food chemistry, 2019, Feb-15, Volume: 274

    Topics: Catechin; Circular Dichroism; Emulsions; Hydrogen-Ion Concentration; Hydrophobic and Hydrophilic Interactions; Protein Structure, Secondary; Solubility; Spectrometry, Fluorescence; Tryptophan; Whey Proteins

2019
Untargeted metabolomics coupled with chemometrics analysis reveals potential non-volatile markers during oolong tea shaking.
    Food research international (Ottawa, Ont.), 2019, Volume: 123

    Topics: Catechin; Chromatography, High Pressure Liquid; Databases, Factual; Food Quality; Glutamates; Metabolomics; Phenylalanine; Plant Leaves; Proline; Tea; Tryptophan; Volatile Organic Compounds

2019
Enzymatic modification of oat globulin enables covalent interaction with procyanidin B2.
    Food chemistry, 2022, Nov-30, Volume: 395

    Topics: Avena; Biflavonoids; Catechin; Globulins; Proanthocyanidins; Tryptophan

2022
Sirex noctilio infestation led to inevitable pine death despite activating pathways involved in tolerance.
    Phytochemistry, 2022, Volume: 203

    Topics: Animals; Catechin; Flavonols; Glutamates; Glutathione; Hymenoptera; Indoleacetic Acids; Pinus; Proline; Trees; Tryptophan

2022
Limited hydrolysis as a strategy to improve the non-covalent interaction of epigallocatechin-3-gallate (EGCG) with whey protein isolate near the isoelectric point.
    Food research international (Ottawa, Ont.), 2022, Volume: 161

    Topics: Catechin; Hydrolysis; Isoelectric Point; Protein Hydrolysates; Tryptophan; Whey Proteins

2022
Phytochemical Characterization of Malt Spent Grain by Tandem Mass Spectrometry also Coupled with Liquid Chromatography: Bioactive Compounds from Brewery By-Products.
    Frontiers in bioscience (Landmark edition), 2023, 01-10, Volume: 28, Issue:1

    Topics: Animals; Catechin; Chromatography, Liquid; Spectrometry, Mass, Electrospray Ionization; Tandem Mass Spectrometry; Tryptophan

2023