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股骨头骨细胞线粒体功能与骨坏死相关性的研究进展

Update on the correlation between mitochondrial function and osteonecrosis of the femoral head osteocytes.

作者信息

Li Chengming, Ji Hangyu, Zhuang Suyang, Xie Xinhui, Cui Daping, Zhang Cong

机构信息

Department of Orthopedics, Zhongda Hospital Southeast University, Nanjing, People's Republic of China.

Department of Orthopedics, Shenzhen Bao'an District Central Hospital, Shenzhen, People's Republic of China.

出版信息

Redox Rep. 2025 Dec;30(1):2491846. doi: 10.1080/13510002.2025.2491846. Epub 2025 Apr 18.

Abstract

Mitochondrial health is maintained in a steady state through mitochondrial dynamics and autophagy processes. Recent studies have identified healthy mitochondria as crucial regulators of cellular function and survival. This process involves adenosine triphosphate (ATP) synthesis by mitochondrial oxidative phosphorylation (OXPHOS), regulation of calcium metabolism and inflammatory responses, and intracellular oxidative stress management. In the skeletal system, they participate in the regulation of cellular behaviors and the responses of osteoblasts, osteoclasts, chondrocytes, and osteocytes to external stimuli. Indeed, mitochondrial damage or dysfunction occurs in the development of a few bone diseases. For example, mitochondrial damage may lead to an imbalance in osteoblasts and osteoclasts, resulting in osteoporosis, osteomalacia, or poor bone production, and chondrocyte death and inflammatory infiltration in osteoarthritis are the main causes of cartilage degeneration due to mitochondrial damage. However, the opposite exists for osteosarcoma, where overactive mitochondrial metabolism is able to accelerate the proliferation and migration of osteosarcoma cells, which is a major disease feature. Bone is a dynamic organ and osteocytes play a fundamental role in all regions of bone tissue and are involved in regulating bone integrity. This review examines the impact of mitochondrial physiological function on osteocyte health and summarizes the microscopic molecular mechanisms underlying its effects. It highlights that targeted therapies focusing on osteocyte mitochondria may be beneficial for osteocyte survival, providing a new insight for the diagnosis, prevention, and treatment of diseases associated with osteocyte death.

摘要

线粒体健康通过线粒体动力学和自噬过程维持在稳定状态。最近的研究已确定健康的线粒体是细胞功能和存活的关键调节因子。这个过程涉及线粒体氧化磷酸化(OXPHOS)合成三磷酸腺苷(ATP)、调节钙代谢和炎症反应以及细胞内氧化应激管理。在骨骼系统中,它们参与调节细胞行为以及成骨细胞、破骨细胞、软骨细胞和骨细胞对外界刺激的反应。事实上,在一些骨疾病的发展过程中会出现线粒体损伤或功能障碍。例如,线粒体损伤可能导致成骨细胞和破骨细胞失衡,从而导致骨质疏松、骨软化或骨生成不良,而骨关节炎中软骨细胞死亡和炎症浸润是线粒体损伤导致软骨退变的主要原因。然而,骨肉瘤的情况则相反,线粒体代谢过度活跃能够加速骨肉瘤细胞的增殖和迁移,这是一种主要的疾病特征。骨是一个动态器官,骨细胞在骨组织的所有区域都起着基本作用,并参与调节骨的完整性。本综述探讨了线粒体生理功能对骨细胞健康的影响,并总结了其作用的微观分子机制。它强调针对骨细胞线粒体的靶向治疗可能有利于骨细胞存活,为与骨细胞死亡相关疾病的诊断、预防和治疗提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07a6/12010656/dc74da5d8624/YRER_A_2491846_F0001_OC.jpg

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