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August 1, 1996Hypertension189 citations

Advanced Hypertensive Heart Disease in Spontaneously Hypertensive Rats

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CBChristian G. BrillaLMLuiz Shiguero MatsubaraKWKarl T. Weber

Key Result

Long-term lisinopril treatment in spontaneously hypertensive rats normalized arterial pressure and LVH, reversed myocardial fibrosis (P<0.025), and improved diastolic stiffness (P<0.05).

Key Points

  • To determine whether severe myocardial fibrosis, diastolic stiffness, and systolic dysfunction are reversible in advanced hypertensive heart disease using long-term angiotensin-converting enzyme inhibition.
  • Treated 78-week-old male spontaneously hypertensive rats (SHR) with chronic hypertension and advanced left ventricular hypertrophy (LVH), alongside age- and sex-matched normotensive Wistar-Kyoto (WKY) rats, with oral lisinopril (20 mg/kg per day) for 8 months.
  • Assessed systolic arterial pressure, left ventricular mass, morphometric myocardial fibrosis, diastolic stiffness in isolated hearts, myocardial matrix metalloproteinase 1 (MMP-1) activity via [14C]collagen degradation, and systolic stress-strain relationships under isovolumic conditions.
  • Lisinopril normalized systolic arterial pressure (P < .025), completely reversed LVH (P < .025), significantly reversed myocardial fibrosis (P < .025), and improved myocardial diastolic stiffness (P < .05) in SHR, with no significant changes observed in WKY rats.
  • Reversal of fibrosis was accompanied by an increase in myocardial MMP-1 activity in SHR (P < .025), while untreated 110-week-old SHR developed systolic dysfunction (P < .025) that was successfully prevented by lisinopril treatment.

Structured PICO

Does lisinopril reverse myocardial fibrosis and improve diastolic stiffness in advanced hypertensive heart disease in spontaneously hypertensive rats?

P
Population
78-week-old male spontaneously hypertensive rats (SHR) with chronic hypertension and advanced left ventricular hypertrophy (LVH) with severe myocardial fibrosis, and age- and sex-matched normotensive Wistar-Kyoto rats (WKY)
I
Intervention
Lisinopril 20 mg/kg per day oral for 8 months
C
Comparator
Untreated SHR or WKY
O
Outcome
Systolic arterial pressure, left ventricular mass (LVH), myocardial fibrosis, and diastolic stiffnesssurrogate

Long-term ACE inhibition with lisinopril can reverse advanced myocardial fibrosis and improve diastolic stiffness in a rat model of severe hypertensive heart disease.

Main Result

p-value: p=<.025

Abstract

Left ventricular hypertrophy (LVH) in spontaneously hypertensive rats (SHR) is accompanied by a structural remodeling of the myocardium that includes myocyte hypertrophy and interstitial and perivascular fibrosis of intramyocardial coronary arteries. The structural abnormalities related to fibrous tissue accumulation lead to increased myocardial diastolic stiffness and ultimately impaired systolic function of the left ventricle. It has been shown in 14-week-old SHR with early hypertensive heart disease that myocardial fibrosis could be reversed and myocardial diastolic stiffness normalized by 12-week treatment with the angiotensin-converting enzyme inhibitor lisinopril. Whether such functional defects of the myocardium, based on adverse structural changes, are also reversible in advanced hypertensive heart disease has been questioned. Therefore, we treated 78-week-old male SHR that had chronic hypertension and advanced LVH with severe myocardial fibrosis and age- and sex-matched normotensive Wistar-Kyoto rats (WKY) with 20 mg/kg per day oral lisinopril for 8 months. Compared with untreated SHR or WKY, we found the following: (1) Systolic arterial pressure was normalized (P < .025) and LVH completely reversed (P < .025) in SHR, with no significant reduction in systolic arterial pressure or left ventricular mass in WKY; (2) morphometrically determined myocardial fibrosis in SHR was significantly reversed (P < .025) and associated with improved diastolic stiffness (P < .05), which was measured in the isolated heart by calculation of the stiffness constant of the myocardium; no significant changes occurred in WKY; (3) reversal of myocardial fibrosis was accompanied by an increase (P < .025) in myocardial matrix metalloproteinase 1 activity determined by degradation of 14Ccollagen with myocardial tissue extracts after trypsin activation of myocardial promatrix metalloproteinase 1; matrix metalloproteinase 1 activity remained unchanged in WKY treated with lisinopril; and (4) systolic dysfunction, measured by a significantly (P < .025) diminished slope of the systolic stress-strain relation under isovolumic conditions of the left ventricle, was found in 110-week-old SHR, and it could be prevented by lisinopril treatment. Thus, long-term angiotensin-converting enzyme inhibition with lisinopril normalized arterial pressure and LVH, reversed myocardial fibrosis, and improved abnormal myocardial diastolic stiffness in advanced hypertensive heart disease in SHR. In addition, systolic dysfunction of the left ventricle could be prevented. The fibrolytic response to lisinopril was at least partly due to enhanced collagen degradation by activation of tissue matrix metalloproteinase 1.

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Cite This Study

Brilla et al. (1996) studied Advanced hypertensive heart disease. lisinopril vs. untreated SHR or WKY was evaluated on Systolic arterial pressure, left ventricular hypertrophy, and myocardial fibrosis (p=<.025). Long-term lisinopril treatment in spontaneously hypertensive rats normalized arterial pressure and LVH, reversed myocardial fibrosis (P<0.025), and improved diastolic stiffness (P<0.05).

synapsesocial.com/papers/6a1555cda2352da347824563https://doi.org/10.1161/01.hyp.28.2.269
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