ASIC3 plays a protective role in delayed-onset muscle soreness (DOMS) through muscle acid sensation during exercise.

IF 2.5 Q2 CLINICAL NEUROLOGY Frontiers in pain research (Lausanne, Switzerland) Pub Date : 2023-09-19 eCollection Date: 2023-01-01 DOI:10.3389/fpain.2023.1215197
Tahsin Khataei, Christopher J Benson
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Abstract

Immediate exercise-induced pain (IEIP) and DOMS are two types of exercise-induced muscle pain and can act as barriers to exercise. The burning sensation of IEIP occurs during and immediately after intensive exercise, whereas the soreness of DOMS occurs later. Acid-sensing ion channels (ASICs) within muscle afferents are activated by H+ and other chemicals and have been shown to play a role in various chronic muscle pain conditions. Here, we further defined the role of ASICs in IEIP, and also tested if ASIC3 is required for DOMS. After undergoing exhaustive treadmill exercise, exercise-induced muscle pain was assessed in wild-type (WT) and ASIC3-/- mice at baseline via muscle withdrawal threshold (MWT), immediately, and 24 h after exercise. Locomotor movement, grip strength, and repeat exercise performance were tested at baseline and 24 h after exercise to evaluate DOMS. We found that ASIC3-/- had similar baseline muscle pain, locomotor activity, grip strength, and exercise performance as WT mice. WT showed diminished MWT immediately after exercise indicating they developed IEIP, but ASIC3-/- mice did not. At 24 h after baseline exercise, both ASIC3-/- and WT had similarly lower MWT and grip strength, however, ASIC3-/- displayed significantly lower locomotor activity and repeat exercise performance at 24 h time points compared to WT. In addition, ASIC3-/- mice had higher muscle injury as measured by serum lactate dehydrogenase and creatine kinase levels at 24 h after exercise. These results show that ASIC3 is required for IEIP, but not DOMS, and in fact might play a protective role to prevent muscle injury associated with strenuous exercise.

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ASIC3通过运动过程中的肌肉酸性感觉在迟发性肌肉酸痛(DOMS)中发挥保护作用。
即时运动性疼痛(IEIP)和DOMS是两种类型的运动性肌肉疼痛,可以作为运动的障碍。IEIP的烧灼感发生在高强度运动期间和之后,而DOMS的疼痛发生在之后。肌肉传入中的酸感应离子通道(ASIC)被H+和其他化学物质激活,并已被证明在各种慢性肌肉疼痛条件下发挥作用。在这里,我们进一步定义了ASIC在IEIP中的作用,并测试了DOMS是否需要ASIC3。在进行力竭性跑步机运动后,在基线时通过肌肉戒断阈值(MWT)立即和24评估野生型(WT)和ASIC3-/-小鼠的运动诱导的肌肉疼痛 h运动后。在基线和24小时测试了运动机能、握力和重复运动表现 h,以评估DOMS。我们发现ASIC3-/-与WT小鼠具有相似的基线肌肉疼痛、运动活动、握力和运动表现。WT在运动后立即表现出MWT降低,表明它们产生了IEIP,但ASIC3-/-小鼠没有。24 基线运动后h,ASIC3-/-和WT的MWT和握力同样较低,但ASIC3-/在24小时时表现出明显较低的运动活动和重复运动表现 h时间点。此外,ASIC3-/-小鼠在24小时时的血清乳酸脱氢酶和肌酸激酶水平显示其肌肉损伤更高 h运动后。这些结果表明,ASIC3是IEIP所必需的,但不是DOMS,事实上,ASIC3可能在预防剧烈运动引起的肌肉损伤方面发挥保护作用。
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审稿时长
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