Thursday, July 18, 2019

Thin‐fibre receptors expressing acid‐sensing ion channel 3 contribute to muscular mechanical hypersensitivity after exercise

Abstract

Background

Delayed onset muscle soreness (DOMS) is characterised by mechanical hyperalgesia after lengthening contractions (LC). It is relatively common and causes disturbance for many people who require continuous exercise, yet its molecular and peripheral neural mechanisms are poorly understood.

Methods

We examined whether muscular myelinated Aδ‐fibres, in addition to unmyelinated C‐fibres, are involved in LC‐induced mechanical hypersensitivity, and whether acid‐sensing ion channel (ASIC)‐3 expressed in thin‐fibre afferents contributes to this type of pain using a rat model of DOMS. The peripheral contribution of ASIC3 was investigated using single‐fibre electrophysiological recordings in extensor digitorum longus muscle‐peroneal nerve preparations in vitro.

Results

Behavioural tests demonstrated a significant decrease of the muscular mechanical withdrawal threshold following LC to ankle extensor muscles, and it was improved by intramuscular injection of APETx2 (2.2 μM), a selective blocker of ASIC3. The lower concentration of APETx2 (0.22 μM) and its vehicle had no effect on the threshold. Intramuscular injection of APETx2 (2.2 μM) in naïve rats without LC did not affect the withdrawal threshold. In the ankle extensor muscles that underwent LC one day before the electrophysiological recordings, the mechanical response of Aδ‐ and C‐fibres was significantly facilitated (i.e., decreased response threshold and increased magnitude of the response). The facilitated mechanical response of the Aδ‐ and C‐fibres was significantly suppressed by selective blockade of ASIC3 with APETx2, but not by its vehicle.

Conclusions

These results clearly indicate that ASIC3 contributes to the augmented mechanical response of muscle thin‐fibre receptors in delayed onset muscular mechanical hypersensitivity after LC.

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from Wiley: European Journal of Pain: Table of Contents https://ift.tt/2XLszbj
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