Upregulating SERCA2a via gene delivery in a sheep model of ischemic mitral regurgitation maintained preload-recruitable stroke work (8% vs 42% decrease; P<0.001) and reduced left ventricular volume.
12 sheep with a surgical model of apical myocardial infarction and mitral regurgitation followed for 3 months.
Adeno-associated virus 6 (AAV6) carrying SERCA2a vs Reporter gene
Decrease in preload-recruitable stroke work at 3 months, p=<0.001
Absolute Event Rate: 8% vs 42%
p-value: p=<0.001
BACKGROUND: Mitral regurgitation (MR) doubles mortality after myocardial infarction (MI). We have demonstrated that MR worsens remodeling after MI and that early correction reverses remodeling. Sarcoplasmic reticulum Ca(+2)-ATPase (SERCA2a) is downregulated in this process. We hypothesized that upregulating SERCA2a might inhibit remodeling in a surgical model of apical MI (no intrinsic MR) with independent MR-type flow. METHODS AND RESULTS: In 12 sheep, percutaneous gene delivery was performed by using a validated protocol to perfuse both the left anterior descending and circumflex coronary arteries with occlusion of venous drainage. We administered adeno-associated virus 6 (AAV6) carrying SERCA2a under a Cytomegalovirus promoter control in 6 sheep and a reporter gene in 6 controls. After 2 weeks, a standardized apical MI was created, and a shunt was implanted between the left ventricle and left atrium, producing regurgitant fractions of ≈30%. Animals were compared at baseline and 1 and 3 months by 3D echocardiography, Millar hemodynamics, and biopsies. The SERCA2a group had a well-maintained preload-recruitable stroke work at 3 months (decrease by 8±10% vs 42±12% with reporter gene controls; P5-fold during 1 month in both SERCA2a and control animals (P=NS) and decreased by 19% at 3 months, remaining elevated in both groups. CONCLUSIONS: In this controlled model, upregulating SERCA2a induced better function and lesser remodeling, with improved contractility, smaller volume, and activation of prohypertrophic/antiapoptotic pathways. Although caspase-3 remained activated in both groups, SERCA2a sheep had increased molecular antiremodeling "tone." We therefore conclude that upregulating SERCA2a inhibits MR-induced post-MI remodeling in this model and thus may constitute a useful approach to reduce the vicious circle of remodeling in ischemic MR.
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Rоnen Beeri
Hebrew University of Jerusalem
Miguel Chaput
Université de Montréal
J. Luis Guerrero
Universidad de Los Andes
Circulation Heart Failure
Hadassah Medical Center
Mount Sinai Hospital
Cardiovascular Institute of the South
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Beeri et al. (Fri,) conducted a other in Ischemic mitral regurgitation (n=12). Adeno-associated virus 6 (AAV6) carrying SERCA2a vs. Reporter gene was evaluated on Decrease in preload-recruitable stroke work at 3 months (p=<0.001). Upregulating SERCA2a via gene delivery in a sheep model of ischemic mitral regurgitation maintained preload-recruitable stroke work (8% vs 42% decrease; P<0.001) and reduced left ventricular volume.
synapsesocial.com/papers/6a223e932e2a416fdaa41cb6 — DOI: https://doi.org/10.1161/circheartfailure.109.891184
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