PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
August 25, 2005AJP Regulatory Integrative and Comparative Physiology71 citations

Brain stem control of arterial pressure in chronic arterial baroreceptor-denervated rats

View Full Paper
ASAnn M. SchreihoferSISatoru ItoASAlan F. Sved

Key Result

In chronic baroreceptor-denervated rats, the rostral ventrolateral medulla continues to drive sympathetic nerve activity to regulate arterial pressure independently of baroreceptor inputs.

Structured PICO

P
Population
Urethane-anesthetized rats with chronic baroreceptor denervation (sinoaortic denervation or nucleus tractus solitarius lesions) and control rats
I
Intervention
Pharmacological and surgical manipulations of the brain stem (RVLM/CVLM) and spinal cord (including microinjections of muscimol, bicuculline, kynurenate, and spinal cord transection)
C
Comparator
Control rats with intact baroreflexes
O
Outcome
Changes in arterial pressure (AP)surrogate

The rostral ventrolateral medulla continues to drive sympathetic nerve activity regulating arterial pressure in the chronic absence of baroreceptor inputs, modulated by tonic inhibition from the caudal ventrolateral medulla.

Abstract

Interruption of the baroreceptor reflex by transection of afferent nerves (sinoaortic denervation; SAD) or lesions of nucleus tractus solitarius (NTS) elevates sympathetic nerve activity (SNA) and arterial pressure (AP). However, within 1 wk, mean AP returns to normal despite the absence of baroreflexes. In this study, we examine central mechanisms that control AP in chronic baroreceptor-denervated rats. In urethane-anesthetized rats (1.5 g/kg i.v.) after autonomic ganglionic blockade (5 mg/kg i.v. chlorisondamine), alpha1-adrenergic-mediated pressor responses (1-100 microg/kg i.v. phenylephrine) were not altered by chronic lesions of NTS, indicating vascular reactivity to sympathetic stimulation is normal. Transection of the spinal cord at T1 profoundly decreased AP and was not further reduced by chlorisondamine in control or denervated rats. Inhibition of the rostral ventrolateral medulla (RVLM) by microinjections of muscimol (100 pmol/side) decreased AP to levels not further reduced by chlorisondamine in control rats, rats with SAD, and rats with NTS lesions. Blockade of GABA(A) receptors in the RVLM (50 pmol/side bicuculline) increased AP similarly in control rats and denervated rats. In agreement, inhibition of the caudal ventrolateral medulla (CVLM) by microinjections of muscimol or blockade of glutamatergic inputs (2.7 nmol/side kynurenate) produced comparable increases in AP in control and denervated rats. These data suggest the RVLM continues to drive the SNA that regulates AP in the chronic absence of baroreceptor inputs. In addition, despite the absence of a tonic excitatory input from NTS, in chronic baroreceptor-denervated rats glutamatergic inputs drive the CVLM to tonically inhibit the RVLM. Baroreceptor-independent regulation of the ventrolateral medulla may underlie central mechanisms contributing to the long-term control of AP.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Schreihofer et al. (2005) studied Chronic arterial baroreceptor denervation. Chronic baroreceptor denervation (SAD or NTS lesions) vs. Control rats was evaluated on Arterial pressure regulation by the ventrolateral medulla. In chronic baroreceptor-denervated rats, the rostral ventrolateral medulla continues to drive sympathetic nerve activity to regulate arterial pressure independently of baroreceptor inputs.

synapsesocial.com/papers/6a77428f2e130d02afec7816https://doi.org/10.1152/ajpregu.00307.2005
Ask AI
Helpful
Bookmark
Share
View Full Paper