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Wayne State University

Neural And Humoral Control Of Regional Vascular Beds Via A1 Adenosine Receptors Located In The Nucleus Of The Solitary Tract

Abstract

dc:description.abstract

<p>Previous studies from our laboratory showed that activation of NTS A<sub>1</sub> adenosine</p> <p>receptors yields variable hemodynamic responses with prevailing pressor and iliac</p> <p>vasoconstrictor responses. These responses are accompanied with differential</p> <p>activation of regional sympathetic activity (adrenal>>renal≥lumbar) and inhibition of</p> <p>baroreflex mechanisms at the level of the NTS. The variability of the hemodynamic</p> <p>responses was a result of simultaneous Β-adrenergic vasodilation counteracted with</p> <p>sympathetic and unknown humoral vasoconstriction. Among many potential</p> <p>vasoconstrictors vasopressin, angiotensin II and circulating norepinephrine were</p> <p>considered. Therefore, blood pressure and iliac vascular responses evoked by</p> <p>selective stimulation of NTS A<sub>1</sub> adenosine receptors (CPA 330 pmol/ 50 nl) in intact</p> <p>anesthetized (urethane/chloralose) Sprague Dawley rats were compared with the</p> <p>responses evoked following the blockade of each potential vasoconstrictor mechanism.</p> <p>I found that vasopressin is the major vasoconstrictor released into the circulation most</p> <p>likely as a result of A<sub>1</sub>-adenosine-receptor-mediated inhibition of baroreflex mechanism and disinhibition of tonic restraint of vasopressin release. Angiotensin II and circulating norepinephrine had virtually no contribution to the responses. The direct evaluation</p> <p>confirmed that the levels of circulating vasopressin increased over 4-fold in response to</p> <p>stimulation of NTS A<sub>1</sub> adenosine receptors.</p> <p>Since NTS A<sub>1</sub> adenosine receptors contribute to the pressor component of the</p> <p>stress/hypothalamic defense (HDR) response it was interesting if these receptors</p> <p>contribute to the redistribution of blood from visceral (mesenteric and renal) to somatic</p> <p>(iliac) vascular beds, which is and integral part of HDR. Therefore, regional vascular</p> <p>effects of three major vasoactive factors triggered by stimulation of NTS A1 adenosine</p> <p>receptors (Β-adrenergic vasodilation opposed by sympathetic and vasopressinergic</p> <p>vasoconstriction) were compared; these vasoactive factors differentially affected the</p> <p>regional vascular beds. The Β-adrenergic vasodilation, which dominates in the initial</p> <p>phase of the response, was significantly greater in the iliac than the mesenteric and</p> <p>renal vasculatures. Significant sympathetic vasoconstriction was observed in the iliac</p> <p>but not in the mesenteric and renal vascular beds. In contrast, vasopressin exerted a</p> <p>marked, sustained vasoconstriction similar in all vascular beds. This pattern of regional</p> <p>vascular responses suggests that activation of A<sub>1</sub> adenosine receptors in the NTS has minor, if any, effect on the redistribution of blood from the visceral to the somatic</p> <p>vasculature.</p>

Degree

thesis:*
Name thesis:degree_name
Ph.D.
Level thesis:degree_level
Open Access Dissertation
Discipline thesis:degree_discipline
Physiology
Year dc:date.available
2010

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Mcclure, Joseph Martin
Contributors dc:contributor
  • Tadeusz J. Scislo

Subjects

dc:subject × 7

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:digitalcommons.wayne.edu:oa_dissertations-1144

Chain of custody

source
Harvested from
Wayne State University
Base URL
digitalcommons.wayne.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Mcclure, Joseph Martin. Neural And Humoral Control Of Regional Vascular Beds Via A1 Adenosine Receptors Located In The Nucleus Of The Solitary Tract. Open Access Dissertation thesis, 2010. https://digitalcommons.wayne.edu/oa_dissertations/145