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January 27, 2006Circulation Research191 citationsOpen Access

Exercise Can Prevent and Reverse the Severity of Hypertrophic Cardiomyopathy

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JKJohn P. KonhilasPWP.A. WatsonAMAlexander H. Maass

Key Result

Voluntary exercise in a murine model of hypertrophic cardiomyopathy prevented and reversed established cardiac disease phenotypes, including myocyte disarray, without increasing mortality.

Structured PICO

Does voluntary exercise prevent or reverse the phenotypes of a murine model of hypertrophic cardiomyopathy?

P
Population
Male murine model of hypertrophic cardiomyopathy (HCM) harboring a mutant myosin heavy chain (MyHC) and nontransgenic (NTG) mice
I
Intervention
Voluntary cage wheel exercise
C
Comparator
Nontransgenic (NTG) mice and unexercised baseline states
O
Outcome
Cardiac disease phenotypes including fibrosis, myocyte disarray, hypertrophic markers, and mortalitysurrogate

Voluntary exercise was not harmful and demonstrated the ability to prevent and reverse established cardiac disease phenotypes in a murine model of hypertrophic cardiomyopathy.

Abstract

Hypertrophic cardiomyopathy (HCM) is the most common form of sudden death in young competitive athletes. However, exercise has also been shown to be beneficial in the setting of other cardiac diseases. We examined the ability of voluntary exercise to prevent or reverse the phenotypes of a murine model of HCM harboring a mutant myosin heavy chain (MyHC). No differences in voluntary cage wheel performance between nontransgenic (NTG) and HCM male mice were seen. Exercise prevented fibrosis, myocyte disarray, and induction of "hypertrophic" markers including NFAT activity when initiated before established HCM pathology. If initiated in older HCM animals with documented disease, exercise reversed myocyte disarray (but not fibrosis) and "hypertrophic" marker induction. In addition, exercise returned the increased levels of phosphorylated GSK-3beta to those of NTG and decreased levels of phosphorylated CREB in HCM mice to normal levels. Exercise in HCM mice also favorably impacted components of the apoptotic signaling pathway, including Bcl-2 (an inhibitor of apoptosis) and procaspase-9 (an effector of apoptosis) expression, and caspase-3 activity. Remarkably, there were no differences in mortality between exercised NTG and HCM mice. Thus, not only was exercise not harmful but also it was able to prevent and even reverse established cardiac disease phenotypes in this HCM model.

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Cite This Study

Konhilas et al. (2006) studied Hypertrophic cardiomyopathy. Voluntary exercise (cage wheel) vs. Nontransgenic mice and non-exercised HCM mice was evaluated on Cardiac disease phenotypes (fibrosis, myocyte disarray, hypertrophic markers, mortality). Voluntary exercise in a murine model of hypertrophic cardiomyopathy prevented and reversed established cardiac disease phenotypes, including myocyte disarray, without increasing mortality.

synapsesocial.com/papers/6a07e2c7416812afca06e6f2https://doi.org/10.1161/01.res.0000205766.97556.00
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Value of Exercise Testing in Assessing Clinical State and Prognosis in Hypertrophic Cardiomyopathy2001 · 41 citations
  2. 2Measurement of intraventricular pressure and cardiac performance in the intact closed-chest anesthetized mouse1997 · 109 citations
  3. 3Molecular basis of cardiac performance. Plasticity of the myocardium generated through protein isoform switches.1989 · 310 citations
  4. 4Cardiovascular pre-participation screening of young competitive athletes for prevention of sudden death: proposal for a common European protocol2006 · 878 citations
  5. 5Cardiac Growth Factors in Human Hypertrophy1999 · 124 citations