Novel Carvedilol Analogues That Suppress Store-Overload-Induced Ca<sup>2+</sup>Release
Chris Smith, Thomas G. Back(University of Calgary), Qiang Zhou(Jishou University), Jingqun Zhang(Rush University Medical Center), Aixia Wang(Inner Mongolia University), Guogen Wu(Rush University Medical Center), S.R. Wayne Chen(Libin Cardiovascular Institute of Alberta), Cuihong Xie(Tongji Hospital), Kannan Vembaiyan(University of Calgary)
Cited by 30
Related Papers
Dysregulation of Immune Response in Patients With Coronavirus 2019 (COVID-19) in Wuhan, China
|Clinical Infectious Diseases|2020|5k
Dysregulation of Immune Response in Patients with COVID-19 in Wuhan, China
|SSRN Electronic Journal|2020|963
Carvedilol and its new analogs suppress arrhythmogenic store overload–induced Ca2+ release
|Nature Medicine|2011|253
The ryanodine receptor store-sensing gate controls Ca2+ waves and Ca2+-triggered arrhythmias
|Nature Medicine|2014|200