The goal of the current proposal is to elucidate the role of atrial natriuretic peptide (ANP) in the pathogenesis of NaCl sensitive hypertension in a rodent model, the NaCl sensitive spontaneously hypertensive rat (SHR-S). The hypothesis of the proposal is that ANP in both the peripheral circulation and the brain plays a role in the pathogenesis of hypertension in SHR-S. Previous findings that SHR-S fail to increase circulating ANP levels appropriately compared to WKY in response to dietary NaCl supplementation and that replacement of the deficiency in circulating ANP levels in SHR-S by infusion of exogenous ANP prevents the NaCl sensitive component of hypertension suggest that NaCl sensitive hypertension is an ANP deficient state and that circulating, ANP protects against the NaCl induced exacerbation of hypertension in the SHR-S.
Specific Aim 1 will test the hypothesis that ANP gene expression, receptor mechanisms and metabolic clearance are altered in SHR-S compared to NaCl resistant hypertensive (SHR-R) and normotensive (WKY) controls.
Specific Aim 2 will test the hypothesis that circulating ANP protects against the development of NaCl sensitive hypertension in SHR-S by determining the effects of reducing endogenous plasma ANP levels by chronic administration of a monoclonal antibody to ANP and of increasing endogenous ANP levels by chronic administration of a neutral endopeptidase inhibitor on the development of hypertension in SHR-S, SHR-R and WKY maintained on high NaCl and basal NaCl diets.
Specific Aim 3 will utilize push-pull microperfusion, microinjection and chronic microinfusion techniques to test directly the hypotheses that endogenous ANP acts as an inhibitory neuromodulator of NE release in AHA and that this effect contributes to increased sympathetic nervous system activity and NaCl sensitive hypertension in SHR-S. Exaggerated pressor responses to microinjection of monoclonal antibody to ANP into the nucleus tractus solitarii (NTS) have been found in SHR-S compared to SKY, suggesting that endogenous ANP in NTS plays a role in blood pressure control in SHR-S.
Specific Aim 4 will test the hypothesis that endogenous ANP acts at the level of NTS to lower blood pressure and to modulate arterial baroreflex sensitivity. The effect of altering endogenous ANP levels in NTS by microinjecting a monoclonal antibody to ANP and a neutral endopeptidase inhibitor and/or C-ANP(4-23) on blood pressure, heart rate, sympathetic outflow and sensitivity of arterial baroreflex mediated control of heart rate and lumbar and splanchnic sympathetic nerve activity will be observed. These studies will enhance our understanding of the role of brain and cardiac (circulating) ANP in the pathogenesis of NaCl sensitive and resistant forms of spontaneous hypertension in the rat and in the adaptation of normotensive rats to high dietary NaCl intake. This proposal will lay the groundwork for development of ANP potentiation as an interesting new approach to the treatment of essential hypertension, particularly NaCl sensitive hypertension in man.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL047081-03
Application #
2223404
Study Section
Experimental Cardiovascular Sciences Study Section (ECS)
Project Start
1992-05-01
Project End
1997-04-30
Budget Start
1994-05-01
Budget End
1995-04-30
Support Year
3
Fiscal Year
1994
Total Cost
Indirect Cost
Name
University of Alabama Birmingham
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
004514360
City
Birmingham
State
AL
Country
United States
Zip Code
35294
Mori, T; Durand, J; Chen, Y et al. (2000) Effects of short-term estrogen treatment on the neointimal response to balloon injury of rat carotid artery. Am J Cardiol 85:1276-9
Peng, N; Wei, C C; Oparil, S et al. (2000) The organum vasculosum of the lamina terminalis regulates noradrenaline release in the anterior hypothalamic nucleus. Neuroscience 99:149-56
White, C R; Shelton, J; Chen, S J et al. (1997) Estrogen restores endothelial cell function in an experimental model of vascular injury. Circulation 96:1624-30
Oparil, S; Levine, R L; Chen, S J et al. (1997) Sexually dimorphic response of the balloon-injured rat carotid artery to hormone treatment. Circulation 95:1301-7
Chen, Y F; Durand, J; Claycomb, W C (1997) Hypoxia stimulates atrial natriuretic peptide gene expression in cultured atrial cardiocytes. Hypertension 29:75-82
Tian, B; Meng, Q C; Chen, Y F et al. (1997) Blood pressures and cardiovascular homeostasis in mice having reduced or absent angiotensin-converting enzyme gene function. Hypertension 30:128-33
Campese, V M; Amar, M; Anjali, C et al. (1997) Effect of L-arginine on systemic and renal haemodynamics in salt-sensitive patients with essential hypertension. J Hum Hypertens 11:527-32
Peng, N; Meng, Q C; Oparil, S et al. (1996) Acute saline infusion decreases norepinephrine release in the anterior hypothalamic area. Hypertension 27:578-83
Campese, V M; Tawadrous, M; Bigazzi, R et al. (1996) Salt intake and plasma atrial natriuretic peptide and nitric oxide in hypertension. Hypertension 28:335-40
Zhu, S T; Chen, Y F; Wyss, J M et al. (1996) Atrial natriuretic peptide blunts arterial baroreflex in spontaneously hypertensive rats. Hypertension 27:297-302

Showing the most recent 10 out of 29 publications