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

机译:表达酸感测离子通道3的薄纤维受体有助于运动后的肌肉机械超敏反应

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摘要

Abstract Background Delayed onset muscle soreness (DOMS) is characterized 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 na?ve 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. Significance Here, we show that not only C‐ but also Aδ‐fibre nociceptors in the muscle are involved in mechanical hypersensitivity after lengthening contractions, and that acid‐sensing ion channel (ASIC)‐3 expressed in the thin‐fibre nociceptors is responsible for the mechanical hypersensitivity. ASIC3 might be a novel pharmacological target for pain after exercise.
机译:摘要背景延迟发作肌肉疼痛(DOM)的特征在于延长收缩后机械痛觉(LC)。对于需要持续运动的许多人来说,它对许多人来说是相对普遍的,并且其分子和周边神经机制理解得很差。方法我们检查了肌肉肌肉型aδ-纤维是否涉及肌肉髓质的C纤维,涉及LC诱导的机械超敏反应,以及在薄纤维交感器中表达的酸感测离子通道(ASIC)-3是否有助于这种类型使用DOM的大鼠模型疼痛。在体外,使用单纤维电生理记录研究了ASIC3的外周贡献。结果,行为试验证明,在LC到踝关节伸肌后肌肉机械取出阈值的显着降低,通过肌内注射APETX2(2.2≤μm),ASIC3的选择性阻断剂得到改善。较低浓度的Apetx2(0.22≤μm)及其车辆对阈值没有影响。在没有LC的Naαve大鼠中肌内注射Apetx2(2.2≤μm)没有影响戒断阈值。在电生理记录前一天的踝关节伸肌肌中,Δ-和C纤维的机械响应被显着促进(即响应阈值和响应的增加程度)。通过选择性阻断ASIC3与APETX 2的选择性阻断,但不是由其车辆,通过选择性阻断显着抑制Aδ和C纤维的促进机械响应。结论这些结果清楚地表明ASIC3在LC后延迟发作肌肉机械超敏反应中的肌肉薄纤维受体的增强机械响应有助于增强机械响应。这里的意义,我们表明,在延长收缩后,肌肉中的β-纤维伤蛋白剂也不只参与机械超敏反应,并且在薄纤维的伤寒液釜中表达的酸感测离子通道(ASIC)-3负责机械超敏反应。 ASIC3可能是运动后疼痛的新药靶标。

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  • 来源
    《European journal of pain :》 |2019年第10期|共13页
  • 作者单位

    Department of Neuroscience IIResearch Institute of Environmental Medicine Nagoya UniversityNagoya;

    Department of Functional AnatomyKanazawa University Graduate School of Medical SciencesKanazawa;

    Department of Neuroscience IIResearch Institute of Environmental Medicine Nagoya UniversityNagoya;

    Medical Information DepartmentVitacain Pharmaceutical Co. LtdOsaka Japan;

    Department of Functional AnatomyKanazawa University Graduate School of Medical SciencesKanazawa;

    Department of Neuroscience IIResearch Institute of Environmental Medicine Nagoya UniversityNagoya;

    Department of Physical Therapy College of Life and Health SciencesChubu UniversityKasugai Japan;

    Department of Physical Therapy Faculty of RehabilitationNiigata University of Health and;

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  • 正文语种 eng
  • 中图分类 诊断学;
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