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January 1, 19929 citations

Biological adaptation of the myocardium to a permanent change in loading conditions

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BSBernard Swynghedauw

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Abstract

Cardiac hypertrophy due to permanent mechanical overloading is only one example among thousands of the general process of biological adaptation. The process is randomly governed and results in at least one thermodynamical benefit: to be adaptational and to induce several changes in gene expression. Some of these changes are detrimental, some can even be useless. The cascade of events which finally leads to a permanent modification of the genetic expression involves an initial signal, likely to be the stretch, a pathway which transducts the signal, and a transient change in genetic expression which transmits competence to the cell to be transformed. The permanent modifications occur at all cellular levels including the sarcomere, sarcolemma, energy metabolism, and extra-cellular matrix, but they are species-specific and differ in the ventricles and the atria.

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Cite This Study

Bernard Swynghedauw (1992) studied this question.

synapsesocial.com/papers/6a1fd6c6c2e11e39673e660ehttps://doi.org/10.1007/978-3-642-72477-0_1
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Also Consider

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

  1. 1Anoxia-induced changes in ventricular diastolic compliance in two models of hypertension in rats1992 · 9 citations
  2. 2Alpha-skeletal muscle actin mRNA's accumulate in hypertrophied adult rat hearts.1986 · 283 citations
  3. 3Synthesis of stress proteins in rat cardiac myocytes 2-4 days after imposition of hemodynamic overload.1988 · 114 citations
  4. 4Rat cardiac hypertrophy Altered sodium‐calcium exchange activity in sarcolemmal vesicles1988 · 65 citations
  5. 5Cardiac myocyte hypertrophy is associated with c-myc protooncogene expression.1986 · 258 citations