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May 1, 2002AJP Heart and Circulatory Physiology26 citations

Central mechanisms of acute ANG II modulation of arterial baroreflex control of renal sympathetic nerve activity

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MSMax G. SanderfordTarleton State UniversityVBV. S. BishopBishop's University

Structured PICO

P
Population
Conscious rabbits (area postrema (AP)-lesioned, AP-intact, and midcollicular decerebration models)
I
Intervention
5-min intravenous infusion of angiotensin II (ANG II) at 10 and 20 ng/kg/min
C
Comparator
AP-intact vs AP-lesioned rabbits, and pre- vs post-decerebration states
O
Outcome
Relationship between mean arterial blood pressure (MAP) and renal sympathetic nerve activity (RSNA), specifically maximum RSNA at low MAPsurrogate

Central actions of peripheral ANG II to attenuate reflex disinhibition of RSNA require an intact area postrema and neural interactions rostral to the midcollicular level.

Abstract

Short-term intravenous infusion of angiotensin II (ANG II) into conscious rabbits reduces the range of renal sympathetic nerve activity (RSNA) by attenuating reflex disinhibition of RSNA. This action of ANG II to attenuate the arterial baroreflex range is exaggerated when ANG II is directed into the vertebral circulation, which suggests a mechanism involving the central nervous system. Because an intact area postrema (AP) is required for ANG II to attenuate arterial baroreflex-mediated bradycardia and is also required for maintenance of ANG II-dependent hypertension, we hypothesized that attenuation of maximum RSNA during infusion of ANG II involves the AP. In conscious AP-lesioned (APX) and AP-intact rabbits, we compared the effect of a 5-min intravenous infusion of ANG II (10 and 20 ng x kg(-1) x min(-1)) on the relationship between mean arterial blood pressure (MAP) and RSNA. Intravenous infusion of ANG II into AP-intact rabbits resulted in a dose-related attenuation of maximum RSNA observed at low MAP. In contrast, ANG II had no effect on maximum RSNA in APX rabbits. To further localize the central site of ANG II action, its effect on the arterial baroreflex was assessed after a midcollicular decerebration. Decerebration did not alter arterial baroreflex control of RSNA compared with the control state, but as in APX, ANG II did not attenuate the maximum RSNA observed at low MAP. The results of this study indicate that central actions of peripheral ANG II to attenuate reflex disinhibition of RSNA not only involve the AP, but may also involve a neural interaction rostral to the level of decerebration.

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Cite This Study

Sanderford et al. (2002) studied this question.

synapsesocial.com/papers/6a83d59562f5b6e6a7fe2d0dhttps://doi.org/10.1152/ajpheart.00222.2001
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