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Journal of Molecular and Cellular Cardiology|February 1, 2023
The lack of Troponin I Ser-23/24 phosphorylation is detrimental to in vivo cardiac function and exacerbates cardiac diseaseHussam E Salhi, Vikram Shettigar, Lorien Salyer, et al.
Molecular Therapy. Methods & Clinical Development|March 6, 2023
Micro-dystrophin gene therapy demonstrates long-term cardiac efficacy in a severe Duchenne muscular dystrophy modelArden B Piepho, Jeovanna Lowe, Laurel R Cumby, et al.
Molecular Metabolism|March 13, 2024
Maternal exercise preserves offspring cardiovascular health via oxidative regulation of the ryanodine receptorKelsey M Pinckard, Elisa Félix-Soriano, Shanna Hamilton, et al.
Elife|September 23, 2022
Consequences of PDGFRα<sup>+</sup> fibroblast reduction in adult murine heartsJill T Kuwabara, Akitoshi Hara, Sumit Bhutada, et al.
Plos One|January 10, 2013
Diesterified nitrone rescues nitroso-redox levels and increases myocyte contraction via increased SR Ca(2+) handlingChristopher J Traynham, Steve R Roof, Honglan Wang, et al.
Cardiovascular Research|October 10, 2013
Ryanodine receptor phosphorylation by oxidized CaMKII contributes to the cardiotoxic effects of cardiac glycosidesHsiang-Ting Ho, Bin Liu, Jedidiah S Snyder, et al.
Circulation Research|December 14, 2023
Troponin I Tyrosine Phosphorylation Beneficially Accelerates Diastolic FunctionLorien G Salyer, Hussam E Salhi, Elizabeth A Brundage, et al.
Antioxidants & Redox Signaling|August 8, 2013
HNO enhances SERCA2a activity and cardiomyocyte function by promoting redox-dependent phospholamban oligomerizationVidhya Sivakumaran, Brian A Stanley, Carlo G Tocchetti, et al.
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