epigallocatechin gallate has been researched along with cyclic gmp in 11 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 3 (27.27) | 29.6817 |
2010's | 7 (63.64) | 24.3611 |
2020's | 1 (9.09) | 2.80 |
Authors | Studies |
---|---|
Alvarez, E; Campos-Toimil, M; Justiniano-Basaran, H; Lugnier, C; Orallo, F | 1 |
Katiyar, SK; Punathil, T; Tollefsbol, TO | 1 |
Lograno, MD; Romano, MR | 1 |
Cho, HJ; Kang, HY; Kim, HH; Kim, M; Kwon, HW; Lee, DH; Ok, WJ; Park, HJ; Rhee, MH | 1 |
Huang, Y; Kim, Y; Kumazoe, M; Suemasu, Y; Sugihara, K; Suzuki, T; Tachibana, H; Tsukamoto, S; Tsurudome, Y; Ueda, N; Yamada, K; Yamashita, S | 1 |
Bae, J; Huang, Y; Kim, Y; Kumazoe, M; Murata, M; Nakahara, K; Suemasu, Y; Sugihara, K; Tachibana, H; Takai, M; Tsukamoto, S; Yamada, K; Yamashita, S | 1 |
Kim, HS; Kim, JA; Quon, MJ | 1 |
Bae, J; Hiroi, S; Huang, Y; Kangawa, K; Kumazoe, M; Nojiri, T; Onda, H; Tachibana, H; Takahashi, T; Takai, M; Takamatsu, K; Takeuchi, C; Tanaka, H; Yamada, S; Yamanouchi, M; Yamashita, S | 1 |
Bae, J; Kangawa, K; Kumazoe, M; Nakamura, Y; Nojiri, T; Onda, H; Tachibana, H; Takamatsu, K; Yamada, S; Yamashita, M; Yamashita, S | 1 |
Bae, J; Fujimura, Y; Hidaka, S; Kumazoe, M; Tachibana, H; Takeuchi, C | 1 |
Lee, SK; Ling, WC; Mohd Sabri, NA; Murugan, DD | 1 |
1 review(s) available for epigallocatechin gallate and cyclic gmp
Article | Year |
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New insights into the mechanisms of polyphenols beyond antioxidant properties; lessons from the green tea polyphenol, epigallocatechin 3-gallate.
Topics: Animals; Antioxidants; Autophagy; Calcium Signaling; Catechin; Cell Membrane; Cyclic AMP; Cyclic GMP; DNA Methylation; Gene Expression Regulation; Humans; Hydrogen Peroxide; Mitochondria; Oxidants; Oxidation-Reduction; Polyphenols; Signal Transduction; Tea; Transcription Factors; Transcription, Genetic | 2014 |
10 other study(ies) available for epigallocatechin gallate and cyclic gmp
Article | Year |
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Study of the mechanisms involved in the vasorelaxation induced by (-)-epigallocatechin-3-gallate in rat aorta.
Topics: Angiotensin II; Animals; Aorta; Calcium; Catechin; Cells, Cultured; Cyclic AMP; Cyclic GMP; Dose-Response Relationship, Drug; Male; Norepinephrine; Phosphodiesterase Inhibitors; Rats; Rats, Inbred WKY; Vasodilation | 2006 |
EGCG inhibits mammary cancer cell migration through inhibition of nitric oxide synthase and guanylate cyclase.
Topics: Animals; Anticarcinogenic Agents; Carcinoma; Catechin; Cell Line, Tumor; Cell Movement; Cyclic GMP; Enzyme Inhibitors; Guanylate Cyclase; Mammary Neoplasms, Animal; Mice; NG-Nitroarginine Methyl Ester; Nitric Oxide Synthase; Nitrogen Oxides; Oxadiazoles; Quinoxalines | 2008 |
Epigallocatechin-3-gallate relaxes the isolated bovine ophthalmic artery: involvement of phosphoinositide 3-kinase-Akt-nitric oxide/cGMP signalling pathway.
Topics: Androstadienes; Animals; Catechin; Cattle; Cyclic GMP; Dose-Response Relationship, Drug; Enzyme Inhibitors; Guanylate Cyclase; Models, Biological; NG-Nitroarginine Methyl Ester; Nitric Oxide; Nitric Oxide Donors; Ophthalmic Artery; Oxadiazoles; Penicillamine; Peptides; Phosphatidylinositols; Proto-Oncogene Proteins c-akt; Quinoxalines; Serotonin; Signal Transduction; Vasodilation; Wortmannin | 2009 |
Epigallocatechin-3-gallate has an anti-platelet effect in a cyclic AMP-dependent manner.
Topics: Adenine; Adenylyl Cyclase Inhibitors; Animals; Catechin; Collagen; Cyclic AMP; Cyclic GMP; Male; Phosphorylation; Platelet Aggregation Inhibitors; Rats; Rats, Sprague-Dawley | 2012 |
67-kDa laminin receptor increases cGMP to induce cancer-selective apoptosis.
Topics: Animals; Apoptosis; Caspases; Catechin; Cell Line, Tumor; Cell Proliferation; Cyclic GMP; Cyclic Nucleotide Phosphodiesterases, Type 5; Female; Humans; Imidazoles; Male; Membrane Potential, Mitochondrial; Mice; Mice, Inbred BALB C; Molecular Weight; Multiple Myeloma; Neoplasms; Phosphodiesterase 5 Inhibitors; Piperazines; Receptors, Laminin; Signal Transduction; Sulfones; Triazines; Vardenafil Dihydrochloride; Xenograft Model Antitumor Assays | 2013 |
Phosphodiesterase 5 inhibitor acts as a potent agent sensitizing acute myeloid leukemia cells to 67-kDa laminin receptor-dependent apoptosis.
Topics: Apoptosis; Catechin; Cyclic GMP; Cyclic Nucleotide Phosphodiesterases, Type 5; Drug Synergism; Enzyme Activation; Gene Expression Regulation, Leukemic; HL-60 Cells; Humans; Leukemia, Myeloid, Acute; Nitric Oxide Synthase Type III; Oncogene Protein v-akt; Phosphodiesterase 5 Inhibitors; Primary Cell Culture; Receptors, Laminin; Signal Transduction; Sphingomyelin Phosphodiesterase | 2013 |
PDE3 inhibitor and EGCG combination treatment suppress cancer stem cell properties in pancreatic ductal adenocarcinoma.
Topics: Animals; Biomarkers, Tumor; Carcinoma, Pancreatic Ductal; Catechin; Cell Line, Tumor; Cyclic GMP; Cyclic Nucleotide Phosphodiesterases, Type 3; Disease Models, Animal; Drug Synergism; Fluorescent Antibody Technique; Gene Expression; Humans; Mice; Neoplastic Stem Cells; Phosphodiesterase 3 Inhibitors; Xenograft Model Antitumor Assays | 2017 |
Green Tea Polyphenol EGCG Upregulates Tollip Expression by Suppressing Elf-1 Expression.
Topics: Animals; Catechin; Cyclic GMP; DNA-Binding Proteins; Intracellular Signaling Peptides and Proteins; Male; Mice; Mice, Inbred BALB C; Nuclear Proteins; Protein Phosphatase 2; Second Messenger Systems; Tea; Toll-Like Receptor 4; Transcription Factors; Up-Regulation | 2017 |
Epigallocatechin-3-O-gallate induces acid sphingomyelinase activation through activation of phospholipase C.
Topics: Apoptosis; Catechin; Cell Line, Tumor; Cyclic GMP; Enzyme Activation; Gene Expression Regulation, Neoplastic; Humans; Multiple Myeloma; Phosphorylation; Signal Transduction; Sphingomyelin Phosphodiesterase; Type C Phospholipases | 2019 |
Epigallocatechin gallate (EGCG) alleviates vascular dysfunction in angiotensin II-infused hypertensive mice by modulating oxidative stress and eNOS.
Topics: Angiotensin II; Animals; Antihypertensive Agents; Cyclic GMP; Endothelium, Vascular; Guanosine Monophosphate; Hypertension; Mice; Nitric Oxide; Nitric Oxide Synthase Type III; Oxidative Stress; Reactive Oxygen Species | 2022 |