The role of the sympathetic nervous system (SNS) in long-term control of sodium excretion and arterial pressure is poorly understood. Nonetheless, it is recognized that increased sympathetic activity plays a role in the pathogenesis of salt and water retention in chronic sodium-retaining states including congestive heart failure, hepatic cirrhosis, and nephrotic syndrome, and in some forms of hypertension. Although the afferent mechanisms which mediate increased sympathetic activity in these disease states have not been established, baroreflex dysfunction is often an associated finding and has been hypothesized to account for chronic sympathoexcitation. In recent studies, we have found that chronic increments in salt intake and chronic angiotensin II (ANG II)- hypertension lead to sustained suppression of renal sympathetic activity (RSA) that promotes sodium excretion, suggesting that the SNS may contribute to long-term regulation of sodium balance and arterial pressure. The proposed studies will determine the afferent mechanisms which account for sustained inhibition of RSA during chronic increments in salt intake and chronic ANG II-hypertension, with particular emphasis on cardiopulmonary reflexes, which are especially important in suppressing RSA and promoting sodium excretion during acute increments in body fluids volumes. Another important goal will be to determine whether abolition of both sinoaortic and cardiopulmonary reflexes leads to salt-sensitive hypertension and exacerbation of ANG II-hypertension. To avoid extrapolating the finds from acute manipulations of the SNS to the chronic state, multiple techniques will be used in chronically instrumented dogs to directly examine the temporal effects of the renal sympathetic nerves on sodium excretion. These techniques include measurement of renal norepinephrine spillover as an index of changes in RSA and use of the split bladder preparations with permits simultaneous 24-h urine collection from an intact and denervated kidney. Additionally, alterations in afferent input into the central nervous system will be achieved by deafferentation of sinoaortic baroreceptors and cardiopulmonary receptors, and by control of plasma levels of ANG II. Thus, the proposed studies will directly test the hypothesis that neural-and/or hormonal-mediated renal sympathoinhibition is importantly involved in the chronic feedback regulation of body fluid volumes and arterial pressure under normal conditions and in hypertension.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL051971-09
Application #
6564926
Study Section
Project Start
2001-12-01
Project End
2002-11-30
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
9
Fiscal Year
2002
Total Cost
$233,146
Indirect Cost
Name
University of Mississippi Medical Center
Department
Type
DUNS #
928824473
City
Jackson
State
MS
Country
United States
Zip Code
39216
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Lindsey, Merry L (2018) Reg-ulating macrophage infiltration to alter wound healing following myocardial infarction. Cardiovasc Res 114:1571-1572
DeLeon-Pennell, Kristine Y; Mouton, Alan J; Ero, Osasere K et al. (2018) LXR/RXR signaling and neutrophil phenotype following myocardial infarction classify sex differences in remodeling. Basic Res Cardiol 113:40
Lindsey, Merry L; Kassiri, Zamaneh; Virag, Jitka A I et al. (2018) Guidelines for measuring cardiac physiology in mice. Am J Physiol Heart Circ Physiol 314:H733-H752
Faulkner, Jessica L; Plenty, Nicole L; Wallace, Kedra et al. (2018) Selective inhibition of 20-hydroxyeicosatetraenoic acid lowers blood pressure in a rat model of preeclampsia. Prostaglandins Other Lipid Mediat 134:108-113
Spann, Redin A; Lawson, William J; Bidwell 3rd, Gene L et al. (2018) Rodent vertical sleeve gastrectomy alters maternal immune health and fetoplacental development. Clin Sci (Lond) 132:295-312
Lindsey, Merry L; Jung, Mira; Hall, Michael E et al. (2018) Proteomic analysis of the cardiac extracellular matrix: clinical research applications. Expert Rev Proteomics 15:105-112
Cates, Courtney; Rousselle, Thomas; Wang, Jinli et al. (2018) Activated protein C protects against pressure overload-induced hypertrophy through AMPK signaling. Biochem Biophys Res Commun 495:2584-2594
Mouton, Alan J; Rivera Gonzalez, Osvaldo J; Kaminski, Amanda R et al. (2018) Matrix metalloproteinase-12 as an endogenous resolution promoting factor following myocardial infarction. Pharmacol Res 137:252-258
Taylor, Erin B; Barati, Michelle T; Powell, David W et al. (2018) Plasma Cell Depletion Attenuates Hypertension in an Experimental Model of Autoimmune Disease. Hypertension 71:719-728

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