Department of Laboratory, The First Hospital of China Medical University, Shenyang, China.
Department of Obstetrics and Gynecology, Shengjing Hospital of China Medical University, Shenyang, China.
Biogerontology. 2024 Jun;25(3):399-414. doi: 10.1007/s10522-023-10091-6. Epub 2024 Feb 13.
Mitochondria are dynamic organelles that participate in different cellular process that control metabolism, cell division, and survival, and the kidney is one of the most metabolically active organs that contains abundant mitochondria. Perturbations in mitochondrial homeostasis in the kidney can accelerate kidney aging, and maintaining mitochondrial homeostasis can effectively delay aging in the kidney. Kidney aging is a degenerative process linked to detrimental processes. The significance of aberrant mitochondrial homeostasis in renal aging has received increasing attention. However, the contribution of mitochondrial quality control (MQC) to renal aging has not been reviewed in detail. Here, we generalize the current factors contributing to renal aging, review the alterations in MQC during renal injury and aging, and analyze the relationship between mitochondria and intrinsic renal cells. We also introduce MQC in the context of renal aging, and discuss the study of mitochondria in the intrinsic cells of the kidney, which is the innovation of our paper. In addition, during kidney injury and repair, the specific functions and regulatory mechanisms of MQC systems in resident and circulating cell types remain unclear. Currently, most of the studies we reviewed are based on animal and cellular models, the relationship between renal tissue aging and mitochondria has not been adequately investigated in clinical studies, and there is still a long way to go.
线粒体是参与控制代谢、细胞分裂和存活等多种细胞过程的动态细胞器,肾脏是新陈代谢最活跃的器官之一,含有丰富的线粒体。肾脏中线粒体动态平衡的破坏会加速肾脏衰老,而维持线粒体动态平衡可以有效延缓肾脏衰老。肾脏衰老属于与有害过程相关的退行性过程。异常的线粒体动态平衡在肾脏衰老中的作用受到越来越多的关注。然而,线粒体质量控制(MQC)对肾脏衰老的贡献尚未得到详细的综述。在这里,我们概括了导致肾脏衰老的当前因素,综述了肾脏损伤和衰老过程中 MQC 的改变,并分析了线粒体与内在肾脏细胞之间的关系。我们还介绍了 MQC 在肾脏衰老中的作用,并讨论了研究肾脏固有细胞中线粒体的意义,这是我们论文的创新点。此外,在肾脏损伤和修复过程中,驻留和循环细胞类型中 MQC 系统的特定功能和调节机制仍不清楚。目前,我们综述的大多数研究都是基于动物和细胞模型,在临床研究中还没有充分研究肾脏组织衰老与线粒体之间的关系,还有很长的路要走。