PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
October 23, 2017AJP Heart and Circulatory Physiology18 citationsOpen Access

Chronic femoral artery ligation exaggerates the pressor and sympathetic nerve responses during dynamic skeletal muscle stretch in decerebrate rats

EKE KempfKRKorynne S. RollinsTHTyler D. Hopkins

Structured PICO

Does dynamic stretch of a chronically ligated hindlimb increase mean arterial blood pressure and renal sympathetic nerve activity compared to a freely perfused hindlimb in a rat model of peripheral artery disease?

P
Population
Decerebrate, unanesthetized rats with chronic (~72 h) femoral artery ligation (simulated peripheral artery disease)
I
Intervention
1-Hz dynamic stretch of the previously "ligated" hindlimb
C
Comparator
1-Hz dynamic stretch of the contralateral "freely perfused" hindlimb
O
Outcome
Increases in mean arterial blood pressure and renal sympathetic nerve activitysurrogate

Chronic femoral artery ligation in rats exaggerates the pressor and sympathetic nerve responses during dynamic skeletal muscle stretch, suggesting chronic sensitization of muscle mechanoreceptors.

Abstract

Mechanical and metabolic signals arising during skeletal muscle contraction reflexly increase sympathetic nerve activity and blood pressure (i.e., the exercise pressor reflex). In a rat model of simulated peripheral artery disease in which a femoral artery is chronically (~72 h) ligated, the mechanically sensitive component of the exercise pressor reflex during 1-Hz dynamic contraction is exaggerated compared with that found in normal rats. Whether this is due to an enhanced acute sensitization of mechanoreceptors by metabolites produced during contraction or involves a chronic sensitization of mechanoreceptors is unknown. To investigate this issue, in decerebrate, unanesthetized rats, we tested the hypothesis that the increases in mean arterial blood pressure and renal sympathetic nerve activity during 1-Hz dynamic stretch are larger when evoked from a previously "ligated" hindlimb compared with those evoked from the contralateral "freely perfused" hindlimb. Dynamic stretch provided a mechanical stimulus in the absence of contraction-induced metabolite production that closely replicated the pattern of the mechanical stimulus present during dynamic contraction. We found that the increases in mean arterial blood pressure (freely perfused: 14 ± 1 and ligated: 23 ± 3 mmHg, P = 0.02) and renal sympathetic nerve activity were significantly greater during dynamic stretch of the ligated hindlimb compared with the increases during dynamic stretch of the freely perfused hindlimb. These findings suggest that the exaggerated mechanically sensitive component of the exercise pressor reflex found during dynamic muscle contraction in this rat model of simulated peripheral artery disease involves a chronic sensitizing effect of ligation on muscle mechanoreceptors and cannot be attributed solely to acute contraction-induced metabolite sensitization. NEW & NOTEWORTHY We found that the pressor and sympathetic nerve responses during dynamic stretch were exaggerated in rats with a ligated femoral artery (a model of peripheral artery disease). Our findings provide mechanistic insights into the exaggerated exercise pressor reflex in this model and may have important implications for peripheral artery disease patients.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Kempf et al. (2017) studied this question.

synapsesocial.com/papers/6a73ec94cd7b40c8110dda0chttps://doi.org/10.1152/ajpheart.00498.2017
Ask AI
Helpful
Bookmark
Share
View Full Paper