Key result
A single systemic injection of AAV9 human SERCA2a in mdx mice improved calcium uptake, enhanced grip force, prevented myocardial fibrosis, and restored ejection fraction over 18 months.
Why the study?
Elevated cytosolic calcium drives muscle damage and dysfunction in DMD, and it was hypothesized that a single systemic AAV-mediated SERCA2a delivery could enhance calcium recycling and confer long-lasting benefits.
Does a single systemic delivery of AAV9 human SERCA2a vector improve cardiac and skeletal muscle function in a mouse model of Duchenne muscular dystrophy?
Does a single systemic delivery of AAV9 human SERCA2a vector improve cardiac and skeletal muscle function in a mouse model of Duchenne muscular dystrophy?
A single intravenous injection of AAV9-SERCA2a provides long-term (18-month) prevention of dilated cardiomyopathy and improvement in muscle function in a mouse model of Duchenne muscular dystrophy.
Cautious translation to humans not supported; extends preclinical evidence for durable AAV9-SERCA2a effects in DMD cardiomyopathy.
Loss of dystrophin leads to Duchenne muscular dystrophy (DMD). A pathogenic feature of DMD is the significant elevation of cytosolic calcium. Supraphysiological calcium triggers protein degradation, membrane damage, and eventually muscle death and dysfunction. Sarcoplasmic/endoplasmic reticulum (SR) calcium ATPase (SERCA) is a calcium pump that transports cytosolic calcium to the SR during excitation-contraction coupling. We hypothesize that a single systemic delivery of SERCA2a with adeno-associated virus (AAV) may improve calcium recycling and provide long-lasting benefits in DMD. To test this, we injected an AAV9 human SERCA2a vector (6 × 10 12 viral genome particles/mouse) intravenously to 3-month-old mdx mice, the most commonly used DMD model. Immunostaining and western blot showed robust human SERCA2a expression in the heart and skeletal muscle for 18 months. Concomitantly, SR calcium uptake was significantly improved in these tissues. SERCA2a therapy significantly enhanced grip force and treadmill performance, completely prevented myocardial fibrosis, and normalized electrocardiograms (ECGs). Cardiac catheterization showed normalization of multiple systolic and diastolic hemodynamic parameters in treated mice. Importantly, chamber dilation was completely prevented, and ejection fraction was restored to the wild-type level. Our results suggest that a single systemic AAV9 SERCA2a therapy has the potential to provide long-lasting benefits for DMD.
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Wasala et al. (2020) studied Duchenne muscular dystrophy. AAV9 human SERCA2a vector was evaluated on Cardiac and skeletal muscle function, myocardial fibrosis, ECGs, and hemodynamics. A single systemic injection of AAV9 human SERCA2a in mdx mice improved calcium uptake, enhanced grip force, prevented myocardial fibrosis, and restored ejection fraction over 18 months.
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