Wu Xiaoxin, Fan Xiwei, Crawford Ross, Xiao Yin, Prasadam Indira
1Centre for Biomedical Technologies, Faculty of Engineering, Queensland University of Technology, Brisbane, Queensland, Australia.
2Department of Orthopaedic Surgery, the Second Xiangya Hospital, Central South University, Changsha, Hunan, China.
Aging Dis. 2022 Jul 11;13(4):1166-1182. doi: 10.14336/AD.2021.1228.
Articular cartilage function depends on the temporal and zonal distribution of coordinated metabolic regulation in chondrocytes. Emerging evidence shows the importance of cellular metabolism in the molecular control of the cartilage and its dysregulation in degenerative diseases like osteoarthritis (OA). Compared to most other tissues, chondrocytes are sparsely located in the extracellular matrix, lacking the typical proximity of neural, vascular, and lymphatic tissue. Making up under 5% of the total tissue weight of cartilage, chondrocytes have a relative deficiency of access to nutrients and oxygen, as well as limited pathways for metabolite removal. This makes cartilage a unique tissue with hypocellularity, prolonged metabolic rate, and tissue turnover. Studies in the past decade have shown that several pathways of central carbon metabolism are essential for cartilage homeostasis. Here, we summarised the literature findings on the role of cellular metabolism in determining the chondrocyte function and how this metabolic dysregulation led to cartilage aging in OA and provided an outlook on how the field may evolve in the coming years. Although the various energy metabolism pathways are inextricably linked with one another, for the purpose of this review, we initially endeavoured to examine them individually and in relative isolation. Subsequently, we comment on what is known regarding the integration and linked signalling pathways between these systems and the therapeutic opportunities for targeting OA metabolism.
关节软骨的功能取决于软骨细胞中协调代谢调节的时间和区域分布。新出现的证据表明细胞代谢在软骨分子调控中的重要性以及其在骨关节炎(OA)等退行性疾病中的失调情况。与大多数其他组织相比,软骨细胞稀疏地分布在细胞外基质中,缺乏神经、血管和淋巴组织的典型邻近性。软骨细胞占软骨组织总重量的不到5%,获取营养物质和氧气相对不足,代谢产物清除途径也有限。这使得软骨成为一种具有细胞数量少、代谢率延长和组织更新缓慢特点的独特组织。过去十年的研究表明,几种中心碳代谢途径对软骨内环境稳定至关重要。在此,我们总结了关于细胞代谢在决定软骨细胞功能中的作用以及这种代谢失调如何导致OA中软骨衰老的文献发现,并对该领域在未来几年可能如何发展提供了展望。尽管各种能量代谢途径相互之间有着千丝万缕的联系,但出于本综述的目的,我们最初试图分别且相对独立地对它们进行研究。随后,我们对这些系统之间的整合和相关信号通路以及针对OA代谢的治疗机会的已知情况进行评论。