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May 1, 2001AJP Heart and Circulatory Physiology17 citationsOpen Access

Impaired sarcoplasmic reticulum function leads to contractile dysfunction and cardiac hypertrophy

MMMarkus MeyerSTSusanne U. TrostWBWolfgang F. Bluhm

Key Result

Targeted interference with sarcoplasmic reticulum function using ryanodine in mice reduced maximum speed of contraction by 28% and induced significant cardiac hypertrophy.

PICO

P
Population
Cardiac hypertrophy and contractile dysfunction
I
Intervention / Comparator
Ryanodine (Added to drinking water)
O
Primary Outcome
Maximum speed of contraction (+dP/dt(max)) and relaxation (-dP/dt(max))

Abstract

Sarcoplasmic reticulum (SR)-mediated Ca(2+) sequestration and release are important determinants of cardiac contractility. In end-stage heart failure SR dysfunction has been proposed to contribute to the impaired cardiac performance. In this study we tested the hypothesis that a targeted interference with SR function can be a primary cause of contractile impairment that in turn might alter cardiac gene expression and induce cardiac hypertrophy. To study this we developed a novel animal model in which ryanodine, a substance that alters SR Ca(2+) release, was added to the drinking water of mice. After 1 wk of treatment, in vivo hemodynamic measurements showed a 28% reduction in the maximum speed of contraction (+dP/dt(max)) and a 24% reduction in the maximum speed of relaxation (-dP/dt(max)). The slowing of cardiac relaxation was confirmed in isolated papillary muscles. The late phase of relaxation expressed as the time from 50% to 90% relaxation was prolonged by 22%. After 4 wk of ryanodine administration the animals had developed a significant cardiac hypertrophy that was most prominent in both atria (right atrium +115%, left atrium +100%, right ventricle +23%, and left ventricle +13%). This was accompanied by molecular changes including a threefold increase in atrial natriuretic factor mRNA and a sixfold increase in beta-myosin heavy chain mRNA. Sarcoplasmic endoplasmic reticulum Ca(2+) mRNA was reduced by 18%. These data suggest that selective impairment of SR function in vivo can induce changes in cardiac gene expression and promote cardiac growth.

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Cite This Study

Meyer et al. (2001) studied Cardiac hypertrophy and contractile dysfunction. Ryanodine was evaluated on Maximum speed of contraction (+dP/dt(max)) and relaxation (-dP/dt(max)). Targeted interference with sarcoplasmic reticulum function using ryanodine in mice reduced maximum speed of contraction by 28% and induced significant cardiac hypertrophy.

synapsesocial.com/papers/6a12a051375951284434bba8https://doi.org/10.1152/ajpheart.2001.280.5.h2046
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