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S R Wayne Chen

Showing results (1-10 of 142) with videos related to

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The Journal of Physiology|March 3, 2023
RyR2-dependent modulation of neuronal hyperactivity: A potential therapeutic target for treating Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Frontiers in Pharmacology|January 30, 2023
Corrigendum: R-carvedilol, a potential new therapy for Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Frontiers in Pharmacology|December 19, 2022
R-carvedilol, a potential new therapy for Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Circulation Research|April 2, 2011
Inherited dysfunction of sarcoplasmic reticulum Ca2+ handling and arrhythmogenesisSilvia G Priori, S R Wayne Chen
The Journal of Biological Chemistry|December 10, 2002
Smooth muscle tissues express a major dominant negative splice variant of the type 3 Ca2+ release channel (ryanodine receptor)Dawei Jiang, Bailong Xiao, Xiaoli Li, et al.
Circulation Research|August 10, 2002
Enhanced basal activity of a cardiac Ca2+ release channel (ryanodine receptor) mutant associated with ventricular tachycardia and sudden deathDawei Jiang, Bailong Xiao, Lin Zhang, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 10, 2023
A Gating Mutation in Ryanodine Receptor Type 2 Rescues Phenotypes of Alzheimer's Disease Mouse Models by Upregulating Neuronal AutophagyHua Zhang, Caitlynn Knight, S R Wayne Chen, et al.
American Journal of Physiology. Cell Physiology|July 29, 2005
Reconstitution of local Ca2+ signaling between cardiac L-type Ca2+ channels and ryanodine receptors: insights into regulation by FKBP12.6Sanjeewa A Goonasekera, S R Wayne Chen, Robert T Dirksen
Circulation Research|January 13, 2004
Protein kinase A phosphorylation at serine-2808 of the cardiac Ca2+-release channel (ryanodine receptor) does not dissociate 12.6-kDa FK506-binding protein (FKBP12.6)Bailong Xiao, Cindy Sutherland, Michael P Walsh, et al.
Bioorganic & Medicinal Chemistry Letters|November 21, 2015
Suppression of store overload-induced calcium release by hydroxylated metabolites of carvedilolThomas Malig, Zhichao Xiao, S R Wayne Chen, et al.
Pageof 15

Showing results (1-10 of 142) with videos related to

Sort By:
Pageof 15
The Journal of Physiology|March 3, 2023
RyR2-dependent modulation of neuronal hyperactivity: A potential therapeutic target for treating Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Frontiers in Pharmacology|January 30, 2023
Corrigendum: R-carvedilol, a potential new therapy for Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Frontiers in Pharmacology|December 19, 2022
R-carvedilol, a potential new therapy for Alzheimer's diseaseJinjing Yao, S R Wayne Chen
Circulation Research|April 2, 2011
Inherited dysfunction of sarcoplasmic reticulum Ca2+ handling and arrhythmogenesisSilvia G Priori, S R Wayne Chen
The Journal of Biological Chemistry|December 10, 2002
Smooth muscle tissues express a major dominant negative splice variant of the type 3 Ca2+ release channel (ryanodine receptor)Dawei Jiang, Bailong Xiao, Xiaoli Li, et al.
Circulation Research|August 10, 2002
Enhanced basal activity of a cardiac Ca2+ release channel (ryanodine receptor) mutant associated with ventricular tachycardia and sudden deathDawei Jiang, Bailong Xiao, Lin Zhang, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 10, 2023
A Gating Mutation in Ryanodine Receptor Type 2 Rescues Phenotypes of Alzheimer's Disease Mouse Models by Upregulating Neuronal AutophagyHua Zhang, Caitlynn Knight, S R Wayne Chen, et al.
American Journal of Physiology. Cell Physiology|July 29, 2005
Reconstitution of local Ca2+ signaling between cardiac L-type Ca2+ channels and ryanodine receptors: insights into regulation by FKBP12.6Sanjeewa A Goonasekera, S R Wayne Chen, Robert T Dirksen
Circulation Research|January 13, 2004
Protein kinase A phosphorylation at serine-2808 of the cardiac Ca2+-release channel (ryanodine receptor) does not dissociate 12.6-kDa FK506-binding protein (FKBP12.6)Bailong Xiao, Cindy Sutherland, Michael P Walsh, et al.
Bioorganic & Medicinal Chemistry Letters|November 21, 2015
Suppression of store overload-induced calcium release by hydroxylated metabolites of carvedilolThomas Malig, Zhichao Xiao, S R Wayne Chen, et al.
Pageof 15