Physiological testosterone attenuates profibrotic activities of rat cardiac fibroblasts through modulation of nitric oxide and calcium homeostasis.
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[1] Yi‐Jen Chen,et al. Vascular endothelial growth factor enhances profibrotic activities through modulation of calcium homeostasis in human atrial fibroblasts , 2019, Laboratory Investigation.
[2] Zhi-hao Wang,et al. Exogenous testosterone alleviates cardiac fibrosis and apoptosis via Gas6/Axl pathway in the senescent mice , 2019, Experimental Gerontology.
[3] Kyung-Hee Kim,et al. Differential Transcriptome Profile and Exercise Capacity in Cardiac Remodeling by Pressure Overload versus Volume Overload , 2019, Journal of cardiovascular imaging.
[4] A. Dobs,et al. Analysis of cardiovascular risk factors associated with serum testosterone levels according to the US 2011–2012 National Health and Nutrition Examination Survey , 2018, The aging male : the official journal of the International Society for the Study of the Aging Male.
[5] Yi‐Jen Chen,et al. Factor Xa inhibition by rivaroxaban regulates fibrogenesis in human atrial fibroblasts with modulation of nitric oxide synthesis and calcium homeostasis. , 2018, Journal of molecular and cellular cardiology.
[6] W. Chiu,et al. STIM1 Knockout Enhances PDGF-Mediated Ca2+ Signaling through Upregulation of the PDGFR–PLCγ–STIM2 Cascade , 2018, International journal of molecular sciences.
[7] Y. Takeishi,et al. Relation of Testosterone Levels to Mortality in Men With Heart Failure. , 2018, The American journal of cardiology.
[8] Y. Maeda,et al. Testosterone Deficiency Causes Endothelial Dysfunction via Elevation of Asymmetric Dimethylarginine and Oxidative Stress in Castrated Rats. , 2017, The journal of sexual medicine.
[9] Cheng-Chih Chung,et al. A comparison of left and right atrial fibroblasts reveals different collagen production activity and stress‐induced mitogen‐activated protein kinase signalling in rats , 2017, Acta physiologica.
[10] He Huang,et al. Role of CaMKII in free fatty acid/hyperlipidemia-induced cardiac remodeling both in vitro and in vivo. , 2017, Journal of molecular and cellular cardiology.
[11] Peiqing Liu,et al. Store-Operated Ca2+ Entry (SOCE) contributes to angiotensin II-induced cardiac fibrosis in cardiac fibroblasts. , 2016, Journal of pharmacological sciences.
[12] Sai Santhosh Vadakattu,et al. Transient Decrease in Circulatory Testosterone and Homocysteine Precedes the Development of Metabolic Syndrome Features in Fructose-Fed Sprague Dawley Rats , 2016, Journal of nutrition and metabolism.
[13] Y. Allory,et al. Evidence of estrone-sulfate uptake modification in young and middle-aged rat prostate , 2015, The Journal of Steroid Biochemistry and Molecular Biology.
[14] Ž. Bušić,et al. Testosterone may influence left ventricular diastolic function depending on previous myocardial infarction and smoking. , 2015, International journal of cardiology.
[15] Xiaobin Luo,et al. Fibroblast inward-rectifier potassium current upregulation in profibrillatory atrial remodeling. , 2015, Circulation research.
[16] Yi‐Jen Chen,et al. Androgen attenuates cardiac fibroblasts activations through modulations of transforming growth factor-β and angiotensin II signaling. , 2014, International journal of cardiology.
[17] L. Ekström,et al. A supraphysiological dose of testosterone induces nitric oxide production and oxidative stress , 2014, European journal of preventive cardiology.
[18] A. Bahmani,et al. Beneficial Effects of Testosterone Therapy on Functional Capacity, Cardiovascular Parameters, and Quality of Life in Patients with Congestive Heart Failure , 2014, BioMed research international.
[19] R. Karas,et al. Reducing Endoglin Activity Limits Calcineurin and TRPC‐6 Expression and Improves Survival in a Mouse Model of Right Ventricular Pressure Overload , 2014, Journal of the American Heart Association.
[20] C. Lord,et al. Cardiac Fibroblast-Dependent Extracellular Matrix Accumulation Is Associated with Diastolic Stiffness in Type 2 Diabetes , 2013, PloS one.
[21] L. Janssen,et al. Transforming growth factor-β evokes Ca2+ waves and enhances gene expression in human pulmonary fibroblasts. , 2012, American journal of respiratory cell and molecular biology.
[22] U. Schotten,et al. Transient Receptor Potential Canonical-3 Channel–Dependent Fibroblast Regulation in Atrial Fibrillation , 2012, Circulation.
[23] V. Massheimer,et al. Cellular actions of testosterone in vascular cells: Mechanism independent of aromatization to estradiol , 2012, Steroids.
[24] R. Puvanakrishnan,et al. Effects of testosterone, estrogen and progesterone on TNF-α mediated cellular damage in rat arthritic synovial fibroblasts , 2012, Rheumatology International.
[25] F. Iellamo,et al. Testosterone therapy in women with chronic heart failure: a pilot double-blind, randomized, placebo-controlled study. , 2010, Journal of the American College of Cardiology.
[26] T. Simoncini,et al. Endothelial regulation of eNOS, PAI-1 and t-PA by testosterone and dihydrotestosterone in vitro and in vivo. , 2010, Molecular human reproduction.
[27] J. Corbin,et al. cGMP-Dependent Protein Kinases and cGMP Phosphodiesterases in Nitric Oxide and cGMP Action , 2010, Pharmacological Reviews.
[28] Jing Wang,et al. Inhibition of Calcium–Calmodulin-Dependent Kinase II Suppresses Cardiac Fibroblast Proliferation and Extracellular Matrix Secretion , 2010, Journal of cardiovascular pharmacology.
[29] M. Illario,et al. Insulin stimulates fibroblast proliferation through calcium-calmodulin-dependent kinase II , 2009, Cell cycle.
[30] R. Latif,et al. Effects of amlodipine on serum testosterone, testicular weight and gonado-somatic index in adult rats. , 2008, Journal of Ayub Medical College, Abbottabad : JAMC.
[31] X. Yao. TRPC, cGMP-dependent protein kinases and cytosolic Ca2+. , 2007, Handbook of experimental pharmacology.
[32] P. Ponikowski,et al. Anabolic Deficiency in Men With Chronic Heart Failure: Prevalence and Detrimental Impact on Survival , 2006, Circulation.
[33] C. Fledelius,et al. Evalution of the castrated male Sprague–Dawley rat as a model of the metabolic syndrome and type 2 diabetes , 2006, International Journal of Obesity.
[34] E. V. van Beek,et al. Testosterone therapy in men with moderate severity heart failure: a double-blind randomized placebo controlled trial. , 2006, European heart journal.
[35] R. Jones,et al. Testosterone treatment for men with chronic heart failure , 2004, Heart.
[36] A. Tanimura,et al. Thrombin-induced Ca2+ mobilization in human gingival fibroblasts is mediated by protease-activated receptor-1 (PAR-1). , 2003, Life sciences.
[37] Bertrampitt,et al. Limitation of Excessive Extracellular Matrix Turnover May Contribute to Survival Benefit of Spironolactone Therapy in Patients With Congestive Heart Failure , 2000 .
[38] F. Alla,et al. Limitation of Excessive Extracellular Matrix Turnover May Contribute to Survival Benefit of Spironolactone Therapy in Patients With Congestive Heart Failure: Insights From the Randomized Aldactone Evaluation Study (RALES) , 2000, Circulation.
[39] R. Wojcikiewicz,et al. Distinct localization and function of (1,4,5)IP(3) receptor subtypes and the (1,3,4,5)IP(4) receptor GAP1(IP4BP) in highly purified human platelet membranes. , 2000, Blood.
[40] A. Means,et al. Regulatory cascades involving calmodulin-dependent protein kinases. , 2000, Molecular endocrinology.