Literature DB >> 11834483

Forebrain renin-angiotensin system has a tonic excitatory influence on renal sympathetic nerve activity.

Shun-Guang Wei1, Robert B Felder.   

Abstract

All elements of the renin-angiotensin system (RAS) are present in the forebrain, particularly in circumventricular organs surrounding the third cerebral ventricle. We tested the hypothesis that forebrain angiotensin-converting enzyme (ACE) has a tonic excitatory influence on sympathetic drive. Neurally intact and sinoaortic-denervated pentobarbital-anesthetized rats were treated with forebrain-directed intracarotid artery (ICA) versus intravenous injections of angiotensin I (ANG I) and of the ACE inhibitor captopril. In intact rats, ICA ANG I elicited a rise in arterial pressure and a concomitant reduction in renal sympathetic nerve activity (RSNA; ICA captopril elicited the opposite responses). In barodenervated rats, ICA ANG I increased and ICA captopril decreased arterial pressure and RSNA in parallel; intravenous ANG I had no effect on RSNA. The findings suggest that the intrinsic forebrain RAS has a tonic excitatory influence on sympathetic drive that is overshadowed in normal rats by baroreflex mechanisms, but may assume a more prominent role in pathophysiological states (e.g., heart failure) in which baroreflex mechanisms are impaired and RAS activity is augmented.

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Year:  2002        PMID: 11834483     DOI: 10.1152/ajpheart.2002.282.3.H890

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  13 in total

1.  Central SDF-1/CXCL12 expression and its cardiovascular and sympathetic effects: the role of angiotensin II, TNF-α, and MAP kinase signaling.

Authors:  Shun-Guang Wei; Zhi-Hua Zhang; Yang Yu; Robert B Felder
Journal:  Am J Physiol Heart Circ Physiol       Date:  2014-09-26       Impact factor: 4.733

2.  Afferent innervation of the ischemic kidney contributes to renal dysfunction in renovascular hypertensive rats.

Authors:  Nathalia R Lopes; Maycon I O Milanez; Beatriz S Martins; Amanda C Veiga; Giovanna R Ferreira; Guiomar N Gomes; Adriana C Girardi; Polliane M Carvalho; Fernando N Nogueira; Ruy R Campos; Cássia T Bergamaschi; Erika E Nishi
Journal:  Pflugers Arch       Date:  2020-01-10       Impact factor: 3.657

3.  Centrally administered lipopolysaccharide elicits sympathetic excitation via NAD(P)H oxidase-dependent mitogen-activated protein kinase signaling.

Authors:  Zhi-Hua Zhang; Yang Yu; Shun-Guang Wei; Robert B Felder
Journal:  J Hypertens       Date:  2010-04       Impact factor: 4.844

4.  EP₃ receptors mediate PGE₂-induced hypothalamic paraventricular nucleus excitation and sympathetic activation.

Authors:  Zhi-Hua Zhang; Yang Yu; Shun-Guang Wei; Yoshiko Nakamura; Kazuhiro Nakamura; Robert B Felder
Journal:  Am J Physiol Heart Circ Physiol       Date:  2011-07-29       Impact factor: 4.733

5.  Aldosterone-induced brain MAPK signaling and sympathetic excitation are angiotensin II type-1 receptor dependent.

Authors:  Zhi-Hua Zhang; Yang Yu; Shun-Guang Wei; Robert B Felder
Journal:  Am J Physiol Heart Circ Physiol       Date:  2011-11-11       Impact factor: 4.733

6.  Blood-borne interleukin-1β acts on the subfornical organ to upregulate the sympathoexcitatory milieu of the hypothalamic paraventricular nucleus.

Authors:  Shun-Guang Wei; Yang Yu; Robert B Felder
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2017-11-22       Impact factor: 3.619

7.  Angiotensin II-triggered p44/42 mitogen-activated protein kinase mediates sympathetic excitation in heart failure rats.

Authors:  Shun-Guang Wei; Yang Yu; Zhi-Hua Zhang; Robert M Weiss; Robert B Felder
Journal:  Hypertension       Date:  2008-06-23       Impact factor: 10.190

8.  Hypothalamic corticotrophin-releasing factor and norepinephrine mediate sympathetic and cardiovascular responses to acute intracarotid injection of tumour necrosis factor-alpha in the rat.

Authors:  Z-H Zhang; R B Felder
Journal:  J Neuroendocrinol       Date:  2008-08       Impact factor: 3.627

9.  Systemically administered tempol reduces neuronal activity in paraventricular nucleus of hypothalamus and rostral ventrolateral medulla in rats.

Authors:  Shun-Guang Wei; Zhi-Hua Zhang; Yang Yu; Robert B Felder
Journal:  J Hypertens       Date:  2009-03       Impact factor: 4.844

Review 10.  A current view of brain renin-angiotensin system: Is the (pro)renin receptor the missing link?

Authors:  Adolfo E Cuadra; Zhiying Shan; Colin Sumners; Mohan K Raizada
Journal:  Pharmacol Ther       Date:  2009-08-31       Impact factor: 12.310

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