Neurochemical mechanism of muscular pain: Insight from the study on delayed onset muscle soreness.

IF 2.6 4区 医学 Q2 PHYSIOLOGY
Kazue Mizumura, Toru Taguchi
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引用次数: 0

Abstract

We reviewed fundamental studies on muscular pain, encompassing the characteristics of primary afferent fibers and neurons, spinal and thalamic projections, several muscular pain models, and possible neurochemical mechanisms of muscle pain. Most parts of this review were based on data obtained from animal experiments, and some researches on humans were also introduced. We focused on delayed-onset muscle soreness (DOMS) induced by lengthening contractions (LC), suitable for studying myofascial pain syndromes. The muscular mechanical withdrawal threshold (MMWT) decreased 1-3 days after LC in rats. Changing the speed and range of stretching showed that muscle injury seldom occurred, except in extreme conditions, and that DOMS occurred in parameters without muscle damage. The B2 bradykinin receptor-nerve growth factor (NGF) route and COX-2-glial cell line-derived neurotrophic factor (GDNF) route were involved in the development of DOMS. The interactions between these routes occurred at two levels. A repeated-bout effect was observed in MMWT and NGF upregulation, and this study showed that adaptation possibly occurred before B2 bradykinin receptor activation. We have also briefly discussed the prevention and treatment of DOMS.

肌肉疼痛的神经化学机制:迟发性肌肉酸痛研究的启示。
我们回顾了有关肌肉痛的基础研究,包括初级传入纤维和神经元的特征、脊髓和丘脑投射、几种肌肉痛模型以及肌肉痛可能的神经化学机制。这篇综述的大部分内容基于动物实验所获得的数据,同时也介绍了一些关于人类的研究。我们重点研究了拉长收缩(LC)诱发的延迟性肌肉酸痛(DOMS),它适合用于研究肌筋膜疼痛综合征。大鼠在拉伸收缩 1-3 天后,肌肉机械收缩阈值(MMWT)下降。改变拉伸的速度和范围表明,除了在极端条件下,肌肉损伤很少发生,而在没有肌肉损伤的参数中会出现 DOMS。B2缓激肽受体-神经生长因子(NGF)途径和COX-2-胶质细胞系源性神经营养因子(GDNF)途径参与了DOMS的形成。这些途径之间的相互作用发生在两个层面上。在 MMWT 和 NGF 上调中观察到了重复回合效应,这项研究表明,适应可能发生在 B2 缓激肽受体激活之前。我们还简要讨论了 DOMS 的预防和治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.40
自引率
4.30%
发文量
27
审稿时长
6-12 weeks
期刊介绍: The Journal of Physiological Sciences publishes peer-reviewed original papers, reviews, short communications, technical notes, and letters to the editor, based on the principles and theories of modern physiology and addressed to the international scientific community. All fields of physiology are covered, encompassing molecular, cellular and systems physiology. The emphasis is on human and vertebrate physiology, but comparative papers are also considered. The process of obtaining results must be ethically sound. Fields covered: Adaptation and environment Autonomic nervous function Biophysics Cell sensors and signaling Central nervous system and brain sciences Endocrinology and metabolism Excitable membranes and neural cell physiology Exercise physiology Gastrointestinal and kidney physiology Heart and circulatory physiology Molecular and cellular physiology Muscle physiology Physiome/systems biology Respiration physiology Senses.
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