Key result
Chronic losartan administration for two years significantly increased survival to 88% compared to 44% in untreated mdx mice and preserved cardiac function, but did not improve skeletal muscle disease.
Why the study?
Does long-term losartan administration reduce mortality and preserve cardiac and skeletal muscle function in mdx mice?
Does long-term losartan administration reduce mortality and preserve cardiac and skeletal muscle function in mdx mice?
Absolute Event Rate: 88% vs 44%
p-value: p=0.05
Long-term losartan therapy improves survival and preserves cardiac function in a mouse model of Duchenne muscular dystrophy, highlighting its potential as a prophylactic treatment for DMD-associated cardiomyopathy.
Losartan may merit human DMD cardiomyopathy trials; animal findings leave clinical translation open.
Duchenne muscular dystrophy (DMD) is a degenerative disorder affecting skeletal and cardiac muscle for which there is no effective therapy. Angiotension receptor blockade (ARB) has excellent therapeutic potential in DMD based on recent data demonstrating attenuation of skeletal muscle disease progression during 6-9 months of therapy in the mdx mouse model of DMD. Since cardiac-related death is major cause of mortality in DMD, it is important to evaluate the effect of any novel treatment on the heart. Therefore, we evaluated the long-term impact of ARB on both the skeletal muscle and cardiac phenotype of the mdx mouse. Mdx mice received either losartan (0.6 g/L) (n = 8) or standard drinking water (n = 9) for two years, after which echocardiography was performed to assess cardiac function. Skeletal muscle weight, morphology, and function were assessed. Fibrosis was evaluated in the diaphragm and heart by Trichrome stain and by determination of tissue hydroxyproline content. By the study endpoint, 88% of treated mice were alive compared to only 44% of untreated (p = 0.05). No difference in skeletal muscle morphology, function, or fibrosis was noted in losartan-treated animals. Cardiac function was significantly preserved with losartan treatment, with a trend towards reduction in cardiac fibrosis. We saw no impact on the skeletal muscle disease progression, suggesting that other pathways that trigger fibrosis dominate over angiotensin II in skeletal muscle long term, unlike the situation in the heart. Our study suggests that ARB may be an important prophylactic treatment for DMD-associated cardiomyopathy, but will not impact skeletal muscle disease.
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Bish et al. (2011) studied Duchenne muscular dystrophy (mdx mouse model) (n=17). Losartan vs. Standard drinking water was evaluated on Survival at two years (p=0.05). Chronic losartan administration for two years significantly increased survival to 88% compared to 44% in untreated mdx mice and preserved cardiac function, but did not improve skeletal muscle disease.
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