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Enalapril attenuates the exaggerated sympathetic response to physical stress in prenatally programmed hypertensive
Masaki Mizuno1, German Lozano, Khurrum Siddique
1University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX 75390-9174. scott.smith@utsouthwestern.edu, michel.baum@utsouthwestern.edu.
Insights
Prenatal protein restriction programs hypertension in adult rats, leading to exaggerated sympathetic responses to physical stress. Enalapril, an ACE inhibitor, reduced heightened blood pressure and sympathetic activity in these rats, suggesting the renin-angiotensin system
Area of Science:
- Cardiovascular Physiology
- Developmental Programming
- Renal Sympathetic Nerve Activity
Background:
- Maternal dietary protein deprivation during gestation can program hypertension in adulthood.
- Prenatally programmed hypertensive (PPH) rats exhibit exaggerated sympathetic nervous system responses to physical stressors.
- The underlying mechanisms for this abnormal sympathetic responsiveness in PPH rats are not fully understood.
Purpose of the Study:
- To investigate the role of the renin-angiotensin system (RAS) in the exaggerated sympathetic and pressor responses to physical stress in PPH rats.
- To determine if inhibiting the RAS with enalapril can attenuate these enhanced responses.
Main Methods:
- Assessment of blood pressure and renal sympathetic nerve activity (RSNA) in response to physical stimuli (muscle contraction, stretch, capsaicin).
- Experiments conducted on control and PPH rats treated with vehicle or enalapril (angiotensin-converting enzyme inhibitor) from 3 weeks of age.
- Measurements included conscious resting systolic arterial pressure and responses in decerebrate preparations.
Main Results:
- PPH rats exhibited significantly higher resting systolic arterial pressure and exaggerated pressor and RSNA responses to muscle contraction and stretch compared to controls.
- Enalapril treatment significantly reduced resting systolic pressure in PPH rats and attenuated the enhanced contraction- and stretch-induced elevations in mean pressure and RSNA.
- The effects of enalapril on capsaicin-induced responses were equivocal.
Conclusions:
- The renin-angiotensin system plays a significant role in enhancing renal sympathetic and pressor responses to physical stress in prenatally programmed hypertensive rats.
- Inhibition of the RAS with enalapril effectively attenuates these exaggerated responses, highlighting a potential therapeutic target.
Abstract:
Adulthood hypertension can be prenatally programmed by maternal dietary protein deprivation. We have shown that the sympathetically mediated pressor response to physical stress is exaggerated in prenatally programmed hypertensive (PPH) rats. The mechanisms underlying this abnormal responsiveness remain undetermined. The renin-angiotensin system is known to affect sympathetic nerve activity. Therefore, the purpose of this study was to determine whether inhibition of the renin-angiotensin system attenuates the enhanced sympathetic and pressor responses to physical stress in PPH rats. Changes in renal sympathetic nerve activity and blood pressure in response to hindlimb contraction, hindlimb stretch, and hindlimb intra-arterial capsaicin administration were assessed in control and PPH rats treated (from age 3 weeks) with either vehicle or the angiotensin-converting enzyme inhibitor enalapril. Conscious resting systolic arterial pressure was significantly greater in PPH rats (142±5 mm Hg) than in control (128±2 mm Hg) after vehicle treatment (P<0.05). Resting systolic pressure was reduced by enalapril treatment in PPH rats (125±2 mm Hg) but had no effect in control (128±2 mm Hg). The pressor and renal sympathetic responses to muscle contraction and stretch were significantly higher in decerebrate PPH rats than in decerebrate control in vehicle-treated groups. Responses to capsaicin were variable. Enalapril significantly attenuated the enhanced contraction-induced elevations in mean pressure (vehicle, 45±6 mm Hg; enalapril, 21±3 mm Hg) and renal sympathetic activity (vehicle, 175±22%; enalapril, 89±23%) in PPH rats. Its effects were similar on responses to stretch in PPH rats but were equivocal during capsaicin administration. The results suggest that the renin-angiotensin system contributes to the enhancement of the renal sympathetic and pressor responses to physical stress in PPH rats.
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