angiotensin ii has been researched along with exenatide in 8 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 1 (12.50) | 29.6817 |
2010's | 7 (87.50) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
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Araki, S; Chin-Kanasaki, M; Haneda, M; Hirata, K; Isshiki, K; Kashiwagi, A; Koya, D; Kume, S; Nishiyama, A; Sakaguchi, M; Sugimoto, T; Uzu, T | 1 |
Cahill, C; Geraldes, P; Hiraoka-Yamomoto, J; King, GL; Kitada, M; Li, C; Li, Q; Matsumoto, M; Mima, A; Mizutani, K; Nishikawa, S; Park, K; Rask-Madsen, C | 1 |
Forster, K; Lutz, TA; Riediger, T; Züger, D | 1 |
Li, AQ; Qin, XM; Zhang, MQ; Zhao, L; Zhou, TF | 1 |
Bolstad, FA; Ito, S; Kyotani, Y; Nagayama, K; Ozawa, K; Yoshizumi, M; Zhao, J | 1 |
Li, A; Qin, X; Zhang, M; Zhao, L; Zhou, T | 1 |
Cheng, M; Guan, M; Le, Y; Xue, J; Xue, Y; Zheng, Z | 1 |
Ham, DS; Jeong, IK; Kim, JW; Ko, SH; Lee, SH; Park, SY; Yang, HK; Yoon, KH; You, YH | 1 |
8 other study(ies) available for angiotensin ii and exenatide
Article | Year |
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Exendin-4 has an anti-hypertensive effect in salt-sensitive mice model.
Topics: Angiotensin II; Animals; Antihypertensive Agents; Blood Pressure; Exenatide; Glucagon-Like Peptide-1 Receptor; Hypertension; Kidney; Male; Mice; Mice, Inbred Strains; Peptides; Receptors, Glucagon; Sodium Chloride, Dietary; Venoms | 2009 |
Protective effects of GLP-1 on glomerular endothelium and its inhibition by PKCβ activation in diabetes.
Topics: Angiotensin II; Animals; Cells, Cultured; Diabetes Mellitus, Experimental; Diabetic Nephropathies; Endothelium; Exenatide; Gene Expression Regulation; Glucagon-Like Peptide 1; Glucagon-Like Peptide-1 Receptor; Hypoglycemic Agents; Kidney Glomerulus; Mice; Mice, Inbred C57BL; Mice, Transgenic; Peptides; Protein Kinase C; Protein Kinase C beta; Proto-Oncogene Proteins c-raf; Receptors, Glucagon; RNA Interference; Signal Transduction; Tissue Culture Techniques; Venoms | 2012 |
Amylin and GLP-1 target different populations of area postrema neurons that are both modulated by nutrient stimuli.
Topics: Amino Acids; Analysis of Variance; Angiotensin II; Animals; Area Postrema; Blood Glucose; Cell Count; Cross-Over Studies; Cyclic GMP; Dose-Response Relationship, Drug; Exenatide; Fasting; Feeding Behavior; Food; Gene Expression Regulation; Glucagon-Like Peptide 1; Islet Amyloid Polypeptide; Lithium Chloride; Male; Neurons; Peptides; Proto-Oncogene Proteins c-fos; Rats; Rats, Wistar; Receptors, Calcitonin; Time Factors; Venoms | 2013 |
Exendin-4 alleviates angiotensin II-induced senescence in vascular smooth muscle cells by inhibiting Rac1 activation via a cAMP/PKA-dependent pathway.
Topics: Angiotensin II; Animals; Antioxidants; Cells, Cultured; Cellular Senescence; Cyclic AMP; Cyclic AMP-Dependent Protein Kinases; Cyclin-Dependent Kinase Inhibitor p21; Enzyme Activation; Exenatide; Glucagon-Like Peptide-1 Receptor; Hydrogen Peroxide; Hypoglycemic Agents; Male; Muscle, Smooth, Vascular; Myocytes, Smooth Muscle; NADPH Oxidases; Oxidative Stress; Peptides; rac1 GTP-Binding Protein; Receptors, Glucagon; Second Messenger Systems; Superoxides; Tumor Suppressor Protein p53; Venoms | 2014 |
Exendin-4 Prevents Vascular Smooth Muscle Cell Proliferation and Migration by Angiotensin II via the Inhibition of ERK1/2 and JNK Signaling Pathways.
Topics: Angiotensin II; Animals; Cardiovascular Diseases; Cell Movement; Cell Proliferation; Cells, Cultured; Exenatide; Glucagon-Like Peptide-1 Receptor; Male; MAP Kinase Signaling System; Muscle, Smooth, Vascular; Myocytes, Smooth Muscle; Peptides; Phosphorylation; Rats; Rats, Sprague-Dawley; Signal Transduction; Venoms | 2015 |
Activation of Nrf2 contributes to the protective effect of Exendin-4 against angiotensin II-induced vascular smooth muscle cell senescence.
Topics: Angiotensin II; Animals; Antioxidants; Cells, Cultured; Cellular Senescence; Exenatide; Glucagon-Like Peptide 1; Heme Oxygenase-1; Male; Muscle, Smooth, Vascular; Myocytes, Smooth Muscle; NADH, NADPH Oxidoreductases; NF-E2-Related Factor 2; Oxidation-Reduction; Oxidative Stress; Peptides; Protective Agents; Rats; Rats, Sprague-Dawley; Signal Transduction; Venoms | 2016 |
Effects of exendin-4 on the intrarenal renin-angiotensin system and interstitial fibrosis in unilateral ureteral obstruction mice: Exendin-4 and unilateral ureteral obstruction.
Topics: Actins; Angiotensin I; Angiotensin II; Angiotensin-Converting Enzyme 2; Animals; Collagen Type I; Exenatide; Fibronectins; Fibrosis; Kidney; Male; Mice, Inbred BALB C; Peptide Fragments; Peptides; Peptidyl-Dipeptidase A; Renin-Angiotensin System; RNA, Messenger; Signal Transduction; Smad3 Protein; Transforming Growth Factor beta1; Ureteral Obstruction; Venoms | 2016 |
Suppression of ROS Production by Exendin-4 in PSC Attenuates the High Glucose-Induced Islet Fibrosis.
Topics: Angiotensin II; Animals; Cell Survival; Cyclic AMP-Dependent Protein Kinases; Exenatide; Fibrosis; Glucose; Glucose Intolerance; Islets of Langerhans; Pancreatic Stellate Cells; Peptides; Rats; Rats, Inbred OLETF; Reactive Oxygen Species; Signal Transduction; Transforming Growth Factor beta1; Venoms | 2016 |