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August 1, 1997AJP Heart and Circulatory Physiology108 citations

Volume-overload cardiac hypertrophy is unaffected by ACE inhibitor treatment in dogs

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LDL. J. Dell'ItaliaEBEduardo BalcellsQMQing Cheng Meng

Key Points

  • To investigate whether ACE inhibitor therapy can prevent volume-overload cardiac hypertrophy in dogs with mitral regurgitation.
  • Compared 7 dogs treated with ramipril and 11 untreated dogs for 4 months after induction of mitral regurgitation.

Structured PICO

Does ramipril prevent volume-overload hypertrophy in dogs with chronic mitral regurgitation?

P
Population
18 adult mongrel dogs with induced chronic mitral regurgitation (MR)
I
Intervention
Ramipril 10 mg orally twice daily for 4 months
C
Comparator
No ramipril for 4 months after induction of MR
O
Outcome
Left ventricular (LV) mass measured by cine-magnetic resonance imagingsurrogate

ACE inhibitor therapy with ramipril does not prevent volume-overload cardiac hypertrophy in a canine model of chronic mitral regurgitation, potentially due to compensatory AT1 receptor upregulation.

Abstract

We tested the hypothesis that angiotensin-converting enzyme (ACE) inhibitor therapy prevents volume-overload hypertrophy in dogs with chronic mitral regurgitation (MR). Seven adult mongrel dogs receiving ramipril (R; 10 mg orally, twice/day) for 4 mo were compared with 11 dogs receiving no R (N) for 4 mo after induction of MR. Cine-magnetic resonance imaging demonstrated that left ventricular (LV) mass increased in the R-MR dogs 80 +/- 4 (SE) to 108 +/- 7 g, P < 0.01 and in the N-MR dogs (92 +/- 7 to 112 +/- 8 g, P < 0.001). LV myocyte cell length was greater in the R-MR and N-MR dogs (203 +/- 6 and 177 +/- 10 microns, respectively) than in normal (144 +/- 4 microns, P < 0.05) dogs. There was significant loss of the collagen weave pattern by scanning electron microscopy in both R-MR and N-MR dogs. LV ACE and chymase activities were significantly elevated in R-MR and N-MR compared with normal dogs. LV angiotensin II (ANG II) levels in the R-MR dogs (28 +/- 12 pg/g) were reduced to levels seen in normal dogs (28 +/- 4 pg/g) compared with N-MR dogs (72 +/- 11 pg/g, P < 0.05). Steady-state AT1-receptor mRNA levels decreased 66% in N-MR compared with normal dogs (P < 0.001) and increased 1.5-fold in R-MR compared with normal dogs (P < 0.01). Thus upregulation of the AT1 receptor in the R-MR hearts may provide a mechanism by which normal intracardiac ANG II levels could continue to mediate LV hypertrophy. However, the mechanism of dissolution collagen weave in both N-MR and R-MR hearts may be related to the stretch of volume overload.

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Cite This Study

Dell'Italia et al. (1997) studied this question.

synapsesocial.com/papers/6a1a20cd8db9fef88db4f507https://doi.org/10.1152/ajpheart.1997.273.2.h961
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Also Consider

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

  1. 1ACE inhibitors in HF restore canine pulmonary endothelial function and ANG II vasoconstriction1999 · 9 citations
  2. 2Regulation of extracellular matrix proteins in pressure-overload cardiac hypertrophy1998 · 70 citations
  3. 3Angiotensin-Converting Enzyme Inhibition and the Progression of Congestive Cardiomyopathy1995 · 106 citations
  4. 4Distribution and functional significance of cardiac angiotensin converting enzyme in hypertrophied rat hearts.1993 · 193 citations
  5. 5Angiotensin II Subtype-1 Receptor Blockade During the Development of Left Ventricular Hypertrophy in Dogs: Effects on Ventricular and Myocyte Function1997 · 7 citations