Zhang Zeyuan, Cao Fuming, Liang Dingfa, Pan Meng, Lu William W, Lyu Houchen, Xie Yong, Zhang Licheng, Tang Peifu
Department of Orthopedics, The Fourth Medical Center, Chinese PLA General Hospital, Beijing, 100853, China.
National Clinical Research Center for Orthopedics, Sports Medicine & Rehabilitation, Beijing, 100853, China.
J Orthop Translat. 2025 May 27;52:464-477. doi: 10.1016/j.jot.2025.04.018. eCollection 2025 May.
The musculoskeletal system, the primary load-bearing structure of the human body, plays a crucial role in mechanotransduction, a process comprising mechanosensation, mechanotransduction, and mechanical effect. Aging leads to loss of ability of mechanosensitive cells to sense mechanical stimuli, disruption of transduction pathways, SASP and adiposity accumulation. At the mesoscopic level, bone, cartilage, and muscle differentiation decline, while adipogenesis increases, leading to extracellular matrix and structural aging, ultimately manifesting as macroscopic musculoskeletal degeneration. This review explores intercellular crosstalk and mechanotransduction alterations in aging from a mechanobiological perspective, providing insights into potential therapeutic targets for bone aging and osteoporosis. It also introduces the mesoscopic scale definition and trans mesoscopic transplantation therapy as novel strategies for fracture treatment, postoperative rehabilitation, and bone regeneration, offering innovative directions for future musculoskeletal research.
This article systematically reviews the effects of aging on the musculoskeletal system from a mechanobiological viewpoint, covering from microscopic molecular signaling to macroscopic spatial structural alterations, and proposes new strategies to complement the principles of AO therapy, optimization of braking, new insights into tumor metastasis and weight-bearing, and a new strategy for trans mesoscopic transplantation therapy. These insights will contribute to optimizing the management of geriatric fragility fractures in the elderly, exploring innovative therapies for the treatment of diseases of the aging musculoskeletal system, and facilitating the development of integrative therapies and precision medicine in the field of orthopaedics.
肌肉骨骼系统作为人体主要的承重结构,在机械转导过程中起着关键作用,该过程包括机械感觉、机械转导和机械效应。衰老导致机械敏感细胞感知机械刺激的能力丧失、转导通路破坏、衰老相关分泌表型(SASP)和脂肪堆积。在介观水平上,骨、软骨和肌肉分化能力下降,而成脂作用增加,导致细胞外基质和结构老化,最终表现为宏观的肌肉骨骼退变。本综述从机械生物学角度探讨衰老过程中的细胞间相互作用和机械转导改变,为骨衰老和骨质疏松症的潜在治疗靶点提供见解。还介绍了介观尺度定义和跨介观移植疗法,作为骨折治疗、术后康复和骨再生的新策略,为未来肌肉骨骼研究提供创新方向。
本文从机械生物学观点系统综述了衰老对肌肉骨骼系统的影响,涵盖从微观分子信号到宏观空间结构改变,并提出了补充AO治疗原则、优化制动、对肿瘤转移和负重的新见解以及跨介观移植治疗新策略等新策略。这些见解将有助于优化老年脆性骨折的管理,探索治疗衰老肌肉骨骼系统疾病的创新疗法,并促进骨科领域综合疗法和精准医学的发展。