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January 1, 2000Hypertension Research7 citationsOpen Access

Lisinopril Reduces Left Ventricular Hypertrophy and Cardiac Polyamine Concentrations without a Reduction in Left Ventricular Wall Stress in Transgenic Tsukuba Hypertensive Mice.

TKTatsuya KaiKIKinji Ishikawa

Structured PICO

Does lisinopril reduce left ventricular hypertrophy and cardiac polyamine concentrations in Tsukuba hypertensive mice?

P
Population
12-week-old Tsukuba hypertensive mice (THMs) carrying both human renin and angiotensinogen genes, and C57BL/6 normal controls (n=14 per group, total n=56)
I
Intervention
Lisinopril administered for 8 weeks
C
Comparator
Hydralazine, untreated THMs, and untreated C57BL/6 normal controls
O
Outcome
Left ventricular weight, left ventricular diameter, left ventricular wall stress, and left ventricular polyamine concentrations at 20 weeks of age (after 8 weeks of treatment)surrogate

Lisinopril reduces left ventricular hypertrophy and polyamine concentrations independently of left ventricular wall stress reduction, whereas simple blood pressure lowering with hydralazine does not suppress hypertrophy.

Abstract

This experiment was designed to determine how the angiotensin-converting enzyme inhibitor, lisinopril, acts on left ventricular wall stress and cardiac polyamine concentrations in Tsukuba hypertensive mice (THMs) carrying both human renin and angiotensinogen genes. Twelve-week-old THMs were treated with either lisinopril or hydralazine, or were left untreated, for 8 weeks. C57BL/6 mice of similar age were used as normal controls. Each group consisted of 14 mice. The systolic blood pressure of each mouse was measured once a week. Mice were euthanized at 20 weeks of age, and the left ventricular weight, left ventricular diameter, left ventricular wall stress, and left ventricular polyamine concentrations were measured. The systolic blood pressure of the untreated group was approximately 35 mmHg higher than that of the C57BL/6 mice. The left ventricular weight, left ventricular diameter, left ventricular wall stress, and left ventricular polyamine concentrations in the untreated group were significantly higher compared to those in the C57BL/6 mice. The lisinopril group had significantly decreased systolic blood pressure and other measurement items, except the left ventricular wall stress, in comparison with the untreated group. The hydralazine group also had significantly decreased systolic blood pressure and left ventricular wall stress when compared with the untreated group, but no significant differences in other measurement items when compared with the untreated group. These findings indicate that lisinopril reduces left ventricular hypertrophy and polyamine concentration without reducing left ventricular wall stress, and that simply decreasing blood pressure does not suppress left ventricular hypertrophy.

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Cite This Study

Kai et al. (2000) studied this question.

synapsesocial.com/papers/6a83d1502b578ef1603e970bhttps://doi.org/10.1291/hypres.23.625
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Also Consider

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

  1. 1RENIN–ANGIOTENSIN SYSTEM STIMULATES CARDIAC AND RENAL DISORDERS IN TSUKUBA HYPERTENSIVE MICE1999 · 6 citations
  2. 2Tissue-localized angiotensin II enhances cardiac and renal disorders in Tsukuba hypertensive mice1998 · 9 citations
  3. 3Role of the Renin-Angiotensin System in Cardiac Hypertrophy and Renal Glomerular Sclerosis in Transgenic Hypertensive Mice Carrying Both Human Renin and Angiotensinogen Genes.1998 · 17 citations
  4. 4Effects of lisinopril vs hydralazine on left ventricular hypertrophy and ambulatory blood pressure monitoring in essential hypertension1995 · 16 citations
  5. 5Cardioreparative effects of lisinopril in rats with genetic hypertension and left ventricular hypertrophy.1991 · 326 citations