衰老
生物
线粒体DNA
翻译(生物学)
医学
神经科学
机制(生物学)
粒线体疾病
线粒体
疾病
平衡
生物信息学
细胞生物学
失调家庭
粒体自噬
线粒体融合
自噬
计算生物学
作者
Yu Zhang,Xishui Liu,Zijie Xiang,Yuqing Yang,Lei Xing,Yu Chen,Siming Zhang,Shixiang Zhao,Youzhi Hong,Yusen Qiao,Jiaxiang Bai
标识
DOI:10.1016/j.fmre.2025.12.021
摘要
Mitochondria have complex functional and information-processing networks that play key roles in both health regulation and disease progression. However, the multiple properties and complex thresholds of mitochondrial dysfunction and quality control make the contribution of mitochondria to bone aging elusive these factors prevent mitochondria from being among the most important precision therapies. Currently, many strategies that target mitochondrial homeostasis have entered clinical trials. In mitochondria, mitochondrial DNA (mtDNA) and its associated proteins are potential therapeutic agents for immunometabolic diseases and tissue injury, with the aim of enhancing mitochondrial function. Here, we comprehensively review the intrinsic mechanisms of mitochondrial dysfunction and quality control leading to bone aging and summarize current strategies for the treatment of skeletal aging disorders and the clinical translation of relevant agents in terms of unraveling dysfunctional pathways and developing precision therapies. In this review, we offer a general overview of the progress of clinical application in the treatment of skeletal senescence diseases, and we also provide prospects for the challenges associated with the role of mitochondrial dysfunction in bone senescence in clinical application and future trends in this field.
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