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March 1, 2002AJP Heart and Circulatory Physiology35 citations

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

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SWShun‐Guang WeiRFRobert B. Felder

Structured PICO

Does forebrain-directed intracarotid injection of angiotensin I or captopril alter arterial pressure and renal sympathetic nerve activity compared to intravenous injection in anesthetized rats?

P
Population
Neurally intact and sinoaortic-denervated pentobarbital-anesthetized rats
I
Intervention
Forebrain-directed intracarotid artery (ICA) injections of angiotensin I and the ACE inhibitor captopril
C
Comparator
Intravenous injections of angiotensin I and captopril
O
Outcome
Arterial pressure and renal sympathetic nerve activity (RSNA)surrogate

The intrinsic forebrain renin-angiotensin system exerts a tonic excitatory influence on sympathetic drive, which may become prominent in pathophysiological states like heart failure where baroreflexes are impaired.

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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Cite This Study

Wei et al. (2002) studied this question.

synapsesocial.com/papers/6a86cc64c27ad527967cbb6fhttps://doi.org/10.1152/ajpheart.2002.282.3.h890
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