PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 1, 2012Frontiers in Physiology41 citationsOpen Access

Muscle Afferent Receptors Engaged in Augmented Sympathetic Responsiveness in Peripheral Artery Disease

JLJianhua LiJXJihong Xing

Key Result

Peripheral artery disease accentuates autonomic reflex responses to exercise through the upregulation and sensitization of TRPV1, P2X3, and ASIC3 receptors in muscle sensory neurons, mediated by nerve growth factor.

Structured PICO

P
Population
A review summarizing the role of muscle afferent receptors and nerve growth factor in the exaggerated sympathetic responsiveness to exercise in peripheral artery disease.
I
Intervention
Review of the roles of muscle afferent receptors (TRPV1, P2X, and ASIC) and nerve growth factor (NGF) in the exercise pressor reflex.
C
Comparator
Control rats (freely perfused hindlimbs) or sham-operated limbs.
O
Outcome
Sympathetic nerve activity (SNA) and arterial blood pressure (BP) responses to static exercise or muscle contraction.surrogate

Peripheral artery disease accentuates autonomic reflex responses to exercise through the upregulation and sensitization of muscle afferent receptors, providing potential therapeutic targets for abnormal sympathetic responsiveness.

Limitations

  • The specific mechanisms responsible for the augmented sympathetic response to the muscle mechanoreflex remain to be fully determined.

Abstract

The exercise pressor reflex (EPR) is a neural control mechanism responsible for the cardiovascular responses to exercise. As exercise is initiated, thin fiber muscle afferent nerves are activated by mechanical and metabolic stimuli arising in the contracting muscles. This leads to reflex increases in arterial blood pressure (BP) and heart rate primarily through activation of sympathetic nerve activity (SNA). Studies of humans and animals have indicated that the EPR is exaggerated in a number of cardiovascular diseases. For the last several years, studies have specifically employed a rodent model to examine the mechanisms at receptor and cellular levels by which responses of SNA and BP to static exercise are heightened in peripheral artery disease (PAD), one of the most common cardiovascular disorders. A rat model of this disease has well been established. Specifically, femoral artery occlusion is used to study intermittent claudication that is observed in human PAD. The receptors on thin fiber muscle afferents that are engaged in this disease include transient receptor potential vanilloid type 1 (TRPV1), purinergic P2X, and acid sensing ion channel (ASIC). The role played by nerve growth factor in regulating those sensory receptors in the processing of amplified EPR was also investigated. The purpose of this review is to focus on a theme namely that PAD accentuates autonomic reflex responses to exercise and further address regulatory mechanisms leading to abnormal sympathetic responsiveness. This review will present some of recent results in regard with several receptors in muscle sensory neurons in contribution to augmented autonomic reflex responses in PAD. Review of the findings from recent studies would lead to a better understanding in integrated processing of sympathetic nervous system in PAD.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Li et al. (2012) conducted a review in Peripheral Artery Disease. Muscle afferent receptors (TRPV1, P2X, ASIC) and Nerve Growth Factor was evaluated. Peripheral artery disease accentuates autonomic reflex responses to exercise through the upregulation and sensitization of TRPV1, P2X3, and ASIC3 receptors in muscle sensory neurons, mediated by nerve growth factor.

synapsesocial.com/papers/6a7331137c1bb241ad4b1e6ahttps://doi.org/10.3389/fphys.2012.00247
Ask AI
Helpful
Bookmark
Share
View Full Paper