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Updated: Jun 3, 2026

Post-Myocardial Infarction Heart Failure in Closed-chest Coronary Occlusion/Reperfusion Model in Göttingen Minipigs and Landrace Pigs
Published on: April 17, 2021
Beneficial effects of SR33805 in failing myocardium
Younss Ait Mou1, Attila Toth, Cécile Cassan
1INSERM U1046, Université Montpellier 1, Montpellier, France. yaitmou@lumc.edu
Aims:
SR33805, a potent Ca(2+) channel blocker, increases cardiac myofilament Ca(2+) sensitivity in healthy rat cardiomyocytes. Therefore, the aim of the present study was to evaluate the effects of SR33805 on contractile properties in ischaemic failing hearts after myocardial infarction (MI) in vivo and in vitro at the cellular level.
Methods And Results:
The effect of SR33805 (10 µM) was tested on the excitation-contraction coupling of cardiomyocytes isolated from rat with end-stage heart failure. Cell shortening and Ca(2+) transients were measured in intact cardiomyocytes, while contractile properties were determined in Triton X-100 permeabilized myocytes. Acute treatment with SR33805 restored the MI-altered cell shortening without affecting the Ca(2+) transient amplitude, suggesting an increase of myofilament Ca(2+) sensitivity in MI myocytes. Indeed, a SR33805-induced sensitization of myofilament activation was found to be associated with a slight increase in myosin light chain-2 phosphorylation and a more significant decrease on troponin I (TnI) phosphorylation. Decreased TnI phosphorylation was related to inhibition of protein kinase A activity by SR33805. Finally, administration of a single intra-peritoneal bolus of SR33805 (20 mg/kg) improved end-systolic strain and fractional shortening of MI hearts.
Conclusion:
The present study indicates that treatment with SR33805 improved contractility of ischaemic failing hearts after MI in the rat by selectively modulating the phosphorylation status of sarcomeric regulatory proteins, which then sensitized the myofilaments to Ca(2+). Our results gave a proof of concept that manipulation of the Ca(2+) sensitivity of sarcomeric regulatory proteins can be used to improve contractility of a failing heart.
Insights
SR33805 improved heart contractility in rats with myocardial infarction by increasing myofilament calcium sensitivity. This drug selectively modulated sarcomeric protein phosphorylation, offering a new therapeutic approach for heart failure.
Area of Science:
- Cardiology
- Molecular Biology
- Pharmacology
Background:
- Myocardial infarction (MI) leads to heart failure, impairing cardiac contractility.
- SR33805 is a calcium (Ca2+) channel blocker known to increase cardiac myofilament Ca2+ sensitivity.
Purpose of the Study:
- To evaluate the effects of SR33805 on contractile properties in ischemic failing hearts post-MI.
- To investigate SR33805's impact at both the whole organ (in vivo) and cellular (in vitro) levels.
Main Methods:
- Studied cardiomyocytes isolated from rats with end-stage heart failure post-MI.
- Measured cell shortening and Ca2+ transients in intact and permeabilized myocytes.
- Administered SR33805 in vitro and in vivo (single intraperitoneal bolus).
Main Results:
- SR33805 restored MI-altered cell shortening without changing Ca2+ transient amplitude, indicating increased myofilament Ca2+ sensitivity.
- SR33805 modulated myosin light chain-2 and troponin I phosphorylation, decreasing the latter by inhibiting protein kinase A.
- In vivo, SR33805 improved end-systolic strain and fractional shortening in MI hearts.
Conclusions:
- SR33805 enhances ischemic failing heart contractility post-MI by modulating sarcomeric protein phosphorylation, sensitizing myofilaments to Ca2+.
- This study provides proof of concept for targeting sarcomeric regulatory protein Ca2+ sensitivity to improve heart failure contractility.
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