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January 1, 1995Circulation83 citations

Relevance of Blockade of Cardiac and Circulatory Angiotensin-Converting Enzyme for the Prevention of Volume Overload–Induced Cardiac Hypertrophy

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MRMarcel RuzickaFLFrans H. H. Leenen

Key Points

  • This study aims to explore how different ACE inhibitors affect cardiac hypertrophy under volume overload conditions.
  • Assessed effects of enalapril and quinapril on volume overload-induced cardiac hypertrophy.

Structured PICO

Does quinapril prevent volume overload-induced cardiac hypertrophy better than enalapril in an aortocaval shunt model?

P
Population
Animal model of volume overload-induced cardiac hypertrophy (aortocaval shunt)
I
Intervention
Quinapril (ACE inhibitor with high affinity for cardiac tissue ACE)
C
Comparator
Enalapril (ACE inhibitor with low affinity for cardiac tissue ACE)
O
Outcome
Prevention of right ventricular hypertrophy and left ventricular hypertrophy and dilationsurrogate

ACE inhibitors with high affinity for cardiac tissue ACE, like quinapril, are more effective at preventing volume overload-induced cardiac hypertrophy than those with low affinity, like enalapril.

Abstract

BACKGROUND: Angiotensin-converting enzyme (ACE) inhibitors show major differences in their affinity for cardiac and other tissue ACEs, and their effects on tissue ACE range from minimal to nearly complete blockade. Angiotensin II taken up from the circulation or generated in the heart may mediate the cardiac hypertrophic response to increased cardiac load. Thus, differences between the ACE inhibitors regarding their effects on cardiac ACE may determine their effects on prevention or regression of cardiac hypertrophy. METHODS AND RESULTS: In the present study, we assessed the effects of ACE inhibitors with low (enalapril) and high (quinapril) affinity for cardiac tissue ACE on prevention of volume overload-induced cardiac hypertrophy in relation to their hemodynamic effects. Both blockers were equipotent for circulatory ACE as assessed from the pressure response curve to angiotensin I. Both blockers partially (and similarly) prevented the increase in left ventricular end-diastolic pressure by aortocaval shunt. However, only quinapril prevented or attenuated the development of right ventricular hypertrophy and left ventricular hypertrophy and dilation. CONCLUSIONS: The present findings further stress the involvement of the renin-angiotensin system as a trophic stimulus in the development of cardiac hypertrophy in this model. Moreover, the low affinity of enalapril for cardiac ACE appears to lead to continuous angiotensin II generation in the heart and can thus explain the failure of enalapril to attenuate hypertrophic response of the heart induced by shunt despite decreasing cardiac volume overload.

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Cite This Study

Ruzicka et al. (1995) studied this question.

synapsesocial.com/papers/6a1d8ddc33e2df9c962fb333https://doi.org/10.1161/01.cir.91.1.16
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