Reduced systolic pressure load decreases cell-cycle activity in the fetal sheep heart

Author:

O'Tierney P. F.1,Anderson D. F.12,Faber J. J.12,Louey S.12,Thornburg K. L.132,Giraud G. D.1324

Affiliation:

1. Heart Research Center,

2. Department of Medicine (Cardiovascular Medicine), Oregon Health and Science University, and

3. Department of Physiology and Pharmacology,

4. Portland Veterans Affairs Medical Center, Portland, Oregon

Abstract

The fetal heart is highly sensitive to changes in mechanical load. We have previously demonstrated that increased cardiac load can stimulate cell cycle activity and maturation of immature cardiomyocytes, but the effects of reduced load are not known. Sixteen fetal sheep were given either continuous intravenous infusion of lactated Ringer solution (LR) or enalaprilat, an angiotensin-converting enzyme inhibitor beginning at 127 days gestational age. After 8 days, fetal arterial pressure in the enalaprilat-infused fetuses (23.8 ± 2.8 mmHg) was lower than that of control fetuses (47.5 ± 4.7 mmHg) ( P < 0.0001). Although the body weights of the two groups of fetuses were similar, the heart weight-to-body weight ratios of the enalaprilat-infused fetuses were less than those of the LR-infused fetuses (5.6 ± 0.5 g/kg vs. 7.0 ± 0.6 g/kg, P < 0.0001). Dimensions of ventricular myocytes were not different between control and enalaprilat-infused fetuses. However, there was a significant decrease in cell cycle activity in both the right ventricle ( P < 0.005) and the left ventricle ( P < 0.002) of the enalaprilat-infused fetuses. Thus, we conclude a sustained reduction in systolic pressure load decreases hyperplastic growth in the fetal heart.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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