Treatment with the ACE inhibitor temocapril significantly reduced L-NAME-induced heart tissue ACE activity (0.6 vs 1.7 nmol/mg/h) and prevented coronary vascular and myocardial structural changes in rats.
Does ACE inhibitor treatment prevent cardiovascular remodeling and myocardial hypertrophy in a rat model of nitric oxide synthesis inhibition?
ACE inhibition, but not hydralazine, markedly reduces coronary vascular remodeling and myocardial hypertrophy induced by chronic nitric oxide synthesis inhibition in rats, suggesting a key role for local ACE expression.
Absolute Event Rate: 0.6% vs 1.7%
p-value: p=<0.01
The long-term administration of N -nitro-L -arginine methyl ester (L-NAME), an inhibitor of nitric oxide synthesis, produces coronary vascular remodeling and myocardial hypertrophy in animals. This study used a rat model to investigate the role of angiotensin I converting enzyme (ACE) in the pathogenesis of such changes. We studied the following groups, all of which received drug treatment in their drinking water: untreated controls, and those administered L-NAME, L-NAME, and an ACE inhibitor (ACEI), and L-NAME and hydralazine. Cardiovascular structural changes and tissue ACE activities were evaluated after the first, fourth, and eighth week of treatment. In rats treated with L-NAME alone, vascular remodeling was evident at the fourth and eighth week, and myocardial hypertrophy was present at the eighth week of treatment. The vascular and myocardial remodeling were characterized by increased tissue ACE activities and immunodetectable ACE in those tissues. These changes were markedly reduced by ACEI, but not by hydralazine treatment. Increased local ACE expression may thus be important in the pathogenesis of cardiovascular remodeling in this model. ( J. Clin. Invest. 1997. 99: 278-287.) Key words: angiotensin converting enzyme inhibitor renin-angiotensin system nitric oxide left ventricular hypertrophy coronary circulation enzyme (ACE) activity (17-21). It has been suggested that ACE activation contributes to the development of vascular and myocardial structural changes after left ventricular hypertrophy and failure in rats (22-26). ACE inhibitors (ACEI) prevent cardiac remodeling and prolongs survival after myocardial infarction in both animals (24-26) and humans (27, 28).
Takemoto et al. (Wed,) conducted a other in Coronary vascular remodeling and myocardial hypertrophy (n=191). Temocapril vs. L-NAME alone was evaluated on Heart tissue ACE activity at 8 weeks (nmol/mg/h) (p=<0.01). Treatment with the ACE inhibitor temocapril significantly reduced L-NAME-induced heart tissue ACE activity (0.6 vs 1.7 nmol/mg/h) and prevented coronary vascular and myocardial structural changes in rats.