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Cell Calcium|October 15, 2017
Rho-kinase inhibition reverses impaired Ca2+ handling and associated left ventricular dysfunction in pressure overload-induced cardiac hypertrophyYusuf Olgar, Murat Cenk Celen, Bilge Eren Yamasan, et al.Journal of Cellular and Molecular Medicine|July 12, 2020
Ageing-associated increase in SGLT2 disrupts mitochondrial/sarcoplasmic reticulum Ca2+ homeostasis and promotes cardiac dysfunctionYusuf Olgar, Erkan Tuncay, Sinan Degirmenci, et al.Antioxidants & Redox Signaling|August 24, 2005
Selenium improves cardiac function by attenuating the activation of NF-kappaB due to ischemia-reperfusion injuryBelma Turan, Harjot K Saini, Ming Zhang, et al.BMC Cardiovascular Disorders|April 5, 2022
STIM1-Orai1 interaction mediated calcium influx activation contributes to cardiac contractility of insulin-resistant ratsAysegul Durak, Yusuf Olgar, Kardelen Genc, et al.Biological Trace Element Research|September 12, 2020
Evaluation of the Effects of Aging on the Aorta Stiffness in Relation with Mineral and Trace Element Levels: an Optimized Method via Custom-Built Stretcher DeviceDuygu Aydemir, Naveed Salman, Mehrdad Karimzadehkhouei, et al.Biological Trace Element Research|July 22, 2005
Selenium treatment protects diabetes-induced biochemical and ultrastructural alterations in liver tissueBelgin Can, N Nuray Ulusu, Kamer Kilinç, et al.Mitochondrion|January 9, 2018
Zn2+-transporters ZIP7 and ZnT7 play important role in progression of cardiac dysfunction via affecting sarco(endo)plasmic reticulum-mitochondria coupling in hyperglycemic cardiomyocytesErkan Tuncay, C Verda Bitirim, Yusuf Olgar, et al.Cell Biochemistry and Function|November 28, 2023
An increase in intercellular crosstalk and electrotonic coupling between cardiomyocytes and nonmyocytes reshapes the electrical conduction in the metabolic heart characterized by short QT intervals in ECGsDeniz Billur, Yusuf Olgar, Aysegul Durak, et al.Molecular and Cellular Biochemistry|September 15, 2019
Differential expression of genes participating in cardiomyocyte electrophysiological remodeling via membrane ionic mechanisms and Ca2+-handling in human heart failureEda Seyma Kepenek, Evren Ozcinar, Erkan Tuncay, et al.Biochemical and Biophysical Research Communications|January 5, 2005
TNF-alpha as a potential mediator of cardiac dysfunction due to intracellular Ca2+-overloadMing Zhang, Yan-Jun Xu, Harjot K Saini, et al.Pageof 13