Why the study?
Does heart-restricted expression of the DeltaH2-R19 minigene normalize cardiac function in the mdx mouse model of DMD cardiomyopathy?
Does heart-restricted expression of the DeltaH2-R19 minigene normalize cardiac function in the mdx mouse model of DMD cardiomyopathy?
A mini-dystrophin gene that fully restores skeletal muscle function only partially corrects cardiac dysfunction in a mouse model of Duchenne muscular dystrophy, indicating novel strategies are needed for DMD cardiomyopathy.
Partial cardiac rescue in mdx mice leaves open whether refined minigenes can fully address DMD cardiomyopathy; further preclinical work needed before translation.
Duchenne muscular dystrophy (DMD) affects both skeletal and cardiac muscle. It is currently unclear whether the strategies developed for skeletal muscle can ameliorate cardiomyopathy. Synthetic mini-/micro-dystrophin genes have yielded impressive skeletal muscle protection in animal models. The 6-kb DeltaH2-R19 minigene is particularly promising because it completely restores skeletal muscle force to wild-type levels. Here, we examined whether expressing this minigene in the heart, but not skeletal muscle, could normalize cardiac function in the mdx model of DMD cardiomyopathy. Transgenic mdx mice were generated to express the DeltaH2-R19 minigene under the control of the alpha-myosin heavy-chain promoter. Heart structure and function were examined in adult and very old mice. The DeltaH2-R19 minigene enhanced cardiomyocyte sarcolemmal strength and prevented myocardial fibrosis. It also restored the dobutamine response and enhanced treadmill performance. Surprisingly, heart-restricted DeltaH2-R19 minigene expression did not completely normalize electrocardiogram and hemodynamic abnormalities. Overall, systolic function and ejection fraction were restored to normal levels but stroke volume and cardiac output remained suboptimal. Our results demonstrate that the skeletal muscle-proven DeltaH2-R19 minigene can correct cardiac histopathology but cannot fully normalize heart function. Novel strategies must be developed to completely restore heart function in DMD.
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Yue et al. (2008) studied this question.
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