glyburide has been researched along with 8-bromocyclic gmp in 16 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 10 (62.50) | 18.2507 |
2000's | 5 (31.25) | 29.6817 |
2010's | 1 (6.25) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Funai, T; Hinata, S; Ichiyama, A; Matsukage, T; Nishi, S; Yoshimi, T | 1 |
Okamoto, K; Sakuta, H; Tandai, M | 1 |
Okamoto, K; Sakuta, H; Watanabe, Y | 1 |
Kume, H; Mikawa, K; Takagi, K | 1 |
Bottrill, FE; Hiley, CR; McCulloch, AI; Randall, MD | 1 |
Katusic, ZS; Onoue, H | 1 |
Kinoshita, M; Liu, Q; Matsumoto, T; Nakae, I; Omura, T; Takahashi, M; Takaoka, A | 1 |
Bryan, RM; Pelligrino, DA; Wang, Q | 1 |
Allescher, HD; Franck, H; Puschmann, A; Schusdziarra, V; Storr, M | 1 |
Chen, SJ; Wu, CC; Yen, MH | 1 |
Mohan, RM; Paterson, DJ | 1 |
Almond, SC; Paterson, DJ | 1 |
Baker, JE; Bosnjak, ZJ; Contney, SJ; Gross, GJ; Kalyanaraman, B; Singh, R | 1 |
Brading, AF; Deka, DK | 1 |
Cameron, JS; Chen, J; Wilson, I; Zhu, JX | 1 |
Balfagón, G; Blanco-Rivero, J; Cogolludo, A; del Campo, L; Márquez-Rodas, I; Nava, MP; Pérez-Vizcaíno, F; Sastre, E | 1 |
16 other study(ies) available for glyburide and 8-bromocyclic gmp
Article | Year |
---|---|
Regulation of glucokinase gene expression in cultured rat islet cells: the inhibitory effects of T3 and glucagon, and the stimulatory effect of glibenclamide.
Topics: Animals; Base Sequence; Bucladesine; Cells, Cultured; Cyclic GMP; Cycloheximide; DNA, Complementary; Gene Expression Regulation, Enzymologic; Glucagon; Glucokinase; Glucose; Glyburide; Insulin; Islets of Langerhans; Male; Molecular Sequence Data; Rats; Rats, Wistar; RNA, Messenger; Triiodothyronine; Vanadates | 1994 |
Atrial natriuretic factor potentiates glibenclamide-sensitive K+ currents via the activation of receptor guanylate cyclase in follicle-enclosed Xenopus oocytes.
Topics: Animals; Atrial Natriuretic Factor; Benzopyrans; Cyclic GMP; Dose-Response Relationship, Drug; Electrophysiology; Female; Glyburide; Guanylate Cyclase; Oocytes; Polysaccharides; Potassium Channels; Xenopus laevis | 1994 |
Modification by cGMP of glibenclamide-sensitive K+ currents in Xenopus oocytes.
Topics: Animals; Benzopyrans; Cromakalim; Cyclic GMP; Female; Glyburide; In Vitro Techniques; Membrane Potentials; Methylene Blue; Niacinamide; Nicorandil; Nitroprusside; Oocytes; Potassium Channels; Pyridines; Pyrroles; Xenopus laevis | 1993 |
Effects of BKCa channels on the reduction of cytosolic Ca2+ in cGMP-induced relaxation of guinea-pig trachea.
Topics: Animals; Apamin; Atrial Natriuretic Factor; Calcium; Cyclic GMP; Cytosol; Extracellular Space; Glyburide; Guinea Pigs; Intracellular Fluid; Male; Muscle Contraction; Muscle Relaxation; Muscle, Smooth; Nifedipine; Peptides; Potassium; Potassium Channel Blockers; Potassium Channels; Scorpion Venoms; Trachea | 1997 |
Characterization and modulation of EDHF-mediated relaxations in the rat isolated superior mesenteric arterial bed.
Topics: Animals; Biological Factors; Carbachol; Clotrimazole; Cyclic GMP; Drug Interactions; Enzyme Inhibitors; Glyburide; In Vitro Techniques; Male; Mesenteric Arteries; Muscarinic Agonists; Muscle Relaxation; NG-Nitroarginine Methyl Ester; Nitric Oxide Synthase; Rats; Rats, Wistar; Tetraethylammonium; Tetraethylammonium Compounds | 1997 |
Role of potassium channels in relaxations of canine middle cerebral arteries induced by nitric oxide donors.
Topics: 3',5'-Cyclic-GMP Phosphodiesterases; 4-Aminopyridine; Animals; Barium Compounds; Cerebral Arteries; Charybdotoxin; Chlorides; Cyclic GMP; Diltiazem; Dogs; Glyburide; In Vitro Techniques; Molsidomine; Muscle, Smooth, Vascular; Nitric Oxide; Nitroprusside; Potassium Channels; Purinones; Vasodilation; Vasodilator Agents | 1997 |
Heterogeneity in the vasorelaxing effect of nicorandil on dog epicardial coronary arteries: comparison with other NO donors.
Topics: Animals; Atrial Natriuretic Factor; Benzopyrans; Coronary Vessels; Cromakalim; Cyclic GMP; Dogs; Female; Glyburide; In Vitro Techniques; Male; Methylene Blue; Molsidomine; Muscle Contraction; Muscle Relaxation; Muscle, Smooth, Vascular; Niacinamide; Nicorandil; Nitric Oxide; Nitroglycerin; Nitroprusside; Oxyhemoglobins; Pyrroles; Vasodilator Agents | 1997 |
Calcium-dependent and ATP-sensitive potassium channels and the 'permissive' function of cyclic GMP in hypercapnia-induced pial arteriolar relaxation.
Topics: Adenosine Triphosphate; Animals; Benzimidazoles; Blood Pressure; Calcium; Carbon Dioxide; Cerebral Arteries; Cromakalim; Cyclic GMP; Glyburide; Hydrogen-Ion Concentration; Hypercapnia; Indazoles; Nitric Oxide Synthase; Nitric Oxide Synthase Type I; Penicillamine; Peptides; Pia Mater; Potassium Channel Blockers; Potassium Channels; Rats; Rats, Sprague-Dawley; Substrate Specificity; Vasodilation | 1998 |
Involvement of intracellular Ca2+ stores in inhibitory effects of NO donor SIN-1 and cGMP.
Topics: 3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethyl-5-nitro-4-(2-(trifluoromethyl)phenyl)-, Methyl ester; Adenosine Triphosphate; Animals; Apamin; Calcium; Calcium Channel Blockers; Calcium-Transporting ATPases; Carbachol; Charybdotoxin; Cyclic GMP; Egtazic Acid; Glyburide; Ileum; In Vitro Techniques; Indoles; Kinetics; Male; Molsidomine; Muscle Contraction; Muscle, Smooth; Peptides; Potassium Channels; Rats; Rats, Wistar; Tetraethylammonium; Tetrodotoxin; Thionucleotides | 1998 |
Cyclic GMP regulates cromakalim-induced relaxation in the rat aortic smooth muscle: role of cyclic GMP in K(ATP)-channels.
Topics: Adenosine Triphosphate; Animals; Aorta, Thoracic; Apamin; Calcium; Charybdotoxin; Cromakalim; Cyclic GMP; Endothelium, Vascular; Glyburide; In Vitro Techniques; Male; Methylene Blue; Molsidomine; Muscle Relaxation; Muscle, Smooth, Vascular; Nitroprusside; Potassium Channel Blockers; Potassium Channels; Rats; Rats, Inbred WKY | 1999 |
Activation of sulphonylurea-sensitive channels and the NO-cGMP pathway decreases the heart rate response to sympathetic nerve stimulation.
Topics: Analysis of Variance; Animals; Cyclic GMP; Diazoxide; Electric Stimulation; Enzyme Inhibitors; Glyburide; Guinea Pigs; Heart Atria; Heart Rate; Hypoxia; In Vitro Techniques; Male; Nitric Oxide; Norepinephrine; Potassium Channel Blockers; Potassium Channels; Stellate Ganglion; Sympathetic Nervous System; Tolbutamide | 2000 |
Sulphonylurea-sensitive channels and NO-cGMP pathway modulate the heart rate response to vagal nerve stimulation in vitro.
Topics: Acetylcholine; Animals; Cyclic GMP; Diazoxide; Electric Stimulation; Glyburide; Guinea Pigs; Heart Conduction System; Heart Rate; Ion Transport; Male; Muscle Proteins; Nitric Oxide; Nitric Oxide Donors; Nitroprusside; Potassium; Potassium Channels; Signal Transduction; Sulfonylurea Compounds; Tolbutamide; Vagus Nerve | 2000 |
Nitric oxide activates the sarcolemmal K(ATP) channel in normoxic and chronically hypoxic hearts by a cyclic GMP-dependent mechanism.
Topics: Action Potentials; Animals; Animals, Newborn; Blood Pressure; Cyclic GMP; Electron Spin Resonance Spectroscopy; Electrophysiology; Female; Glutathione; Glyburide; Hypoglycemic Agents; Hypoxia; Male; Models, Biological; Neuroprotective Agents; Nitric Oxide; Nitric Oxide Donors; Nitrogen Oxides; Nitroso Compounds; Oxygen; Potassium Channels; Rabbits; S-Nitrosoglutathione; Sarcolemma; Spermine; Time Factors | 2001 |
Nitric oxide activates glibenclamide-sensitive K+ channels in urinary bladder myocytes through a c-GMP-dependent mechanism.
Topics: Adenosine Triphosphate; Animals; Carbazoles; Cyclic GMP; Cyclic GMP-Dependent Protein Kinases; Glyburide; Guinea Pigs; Indoles; Ion Channel Gating; Male; Membrane Potentials; Molsidomine; Myocytes, Smooth Muscle; Nitric Oxide; Nitric Oxide Donors; Oxadiazoles; Patch-Clamp Techniques; Potassium Channels; Quinoxalines; Signal Transduction; Urinary Bladder | 2004 |
Cardioprotective effects of K ATP channel activation during hypoxia in goldfish Carassius auratus.
Topics: Acclimatization; Action Potentials; Analysis of Variance; Animals; Cyclic GMP; Diazoxide; Glyburide; Goldfish; Hypoxia; Mitochondria; Models, Biological; Myocardium; NG-Nitroarginine Methyl Ester; Penicillamine; Potassium Channels; Sarcolemma | 2005 |
Cirrhosis decreases vasoconstrictor response to electrical field stimulation in rat mesenteric artery: role of calcitonin gene-related peptide.
Topics: Animals; ATP-Binding Cassette Transporters; Calcitonin Gene-Related Peptide; Calcitonin Gene-Related Peptide Receptor Antagonists; Calcitonin Receptor-Like Protein; Carbon Tetrachloride; Cyclic GMP; Electric Stimulation; Glyburide; KATP Channels; Liver Cirrhosis; Male; Mesenteric Arteries; Muscle Cells; Oxadiazoles; Peptide Fragments; Pinacidil; Potassium Channels, Inwardly Rectifying; Quinoxalines; Rats; Rats, Sprague-Dawley; Receptor Activity-Modifying Protein 1; Receptors, Calcitonin Gene-Related Peptide; Receptors, Drug; Sulfonylurea Receptors; Vasoconstriction; Vasodilation | 2011 |