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光生物调节疗法(PBMT)在骨骼肌再生中的应用:机制、临床应用及未来方向的综合综述

Photobiomodulation therapy (PBMT) in skeletal muscle regeneration: A comprehensive review of mechanisms, clinical applications, and future directions.

作者信息

Liu Haohua, Cheema Umber, Player Darren J

机构信息

Centre for 3D Models of Health and Disease, Division of Surgery and Interventional Science, Faculty of Medical Sciences, UCL, London, UK.

出版信息

Photodiagnosis Photodyn Ther. 2025 Jun;53:104634. doi: 10.1016/j.pdpdt.2025.104634. Epub 2025 May 15.

Abstract

Photobiomodulation therapy (PBMT) emerged as a significant non-invasive method of stimulating regeneration of the skeletal muscle tissue. This review considers the pathophysiologic and molecular mechanisms of muscle repair, with a focus on the imperative of inflammation resolution, activation of satellite cells, mitochondrial ATP generation, and angiogenesis, with consideration of the role of PBMT. We systematically evaluate preclinical and clinical studies, highlighting the translational gaps caused by differences between controlled experimental models and the complex, heterogeneous nature of human muscle injuries. Variability in PBMT parameters-such as wavelength, fluence, and pulse mode-and the lack of standardized protocols are identified as major barriers to consistent therapeutic outcomes. Furthermore, we discuss the effects of PBMT in acute and chronic muscle injury models and provide an in-depth analysis of laser parameters to elucidate dose-response relationships. Future directions for research involve the application of real-time biofeedback devices, the utilization of artificial intelligence-based individualized therapeutic approaches, as well as the integration of photobiomodulation therapy with nanotechnology, biomaterials, and multiple mechanical stimulation methods. In concusion, while PBMT has significant potential for muscle regeneration therapies, its clinical application requires more complete mechanistic validation, rigorous standardization, and interdisciplinary technological development.

摘要

光生物调节疗法(PBMT)作为一种刺激骨骼肌组织再生的重要非侵入性方法应运而生。本综述探讨了肌肉修复的病理生理和分子机制,重点关注炎症消退、卫星细胞激活、线粒体ATP生成和血管生成的必要性,并考虑了PBMT的作用。我们系统地评估了临床前和临床研究,强调了受控实验模型与人类肌肉损伤的复杂性和异质性之间的差异所导致的转化差距。PBMT参数(如波长、能量密度和脉冲模式)的变异性以及缺乏标准化方案被认为是实现一致治疗效果的主要障碍。此外,我们讨论了PBMT在急性和慢性肌肉损伤模型中的作用,并对激光参数进行了深入分析,以阐明剂量反应关系。未来的研究方向包括实时生物反馈设备的应用、基于人工智能的个性化治疗方法的利用,以及光生物调节疗法与纳米技术、生物材料和多种机械刺激方法的整合。总之,虽然PBMT在肌肉再生治疗方面具有巨大潜力,但其临床应用需要更完整的机制验证、严格的标准化和跨学科技术发展。

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