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间质干细胞线粒体转移/递呈的治疗潜力背后的机制。

Mechanisms behind therapeutic potentials of mesenchymal stem cell mitochondria transfer/delivery.

机构信息

Department of Immunology, School of Medicine, Iran University of Medical Sciences, Tehran, Iran.

Department of Immunology, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

J Control Release. 2023 Feb;354:755-769. doi: 10.1016/j.jconrel.2023.01.059. Epub 2023 Jan 27.

Abstract

Mesenchymal stromal/stem cells (MSCs) perform their therapeutic effects through various mechanisms, including their ability to differentiate, producing different growth factors, immunomodulatory factors, and extracellular vesicles (EVs). In addition to the mentioned mechanisms, a new aspect of the therapeutic potential of MSCs has recently been noticed, which occurs through mitochondrial transfer. Various methods of MSCs mitochondria transfer have been used in studies to benefit from their therapeutic potential. Among these methods, mitochondrial transfer after MSCs transplantation in cell-to-cell contact, EVs-mediated transfer of mitochondria, and the use of MSCs isolated mitochondria (MSCs-mt) are well studied. Pathological conditions can affect the cells in the damaged microenvironment and lead to cells mitochondrial damage. Since the defect in the mitochondrial function of the cell leads to a decrease in ATP production and the subsequent cell death, restoring the mitochondrial content, functions, and hemostasis can affect the functions of the damaged cell. Various studies show that the transfer of MSCs mitochondria to other cells can affect vital processes such as proliferation, differentiation, cell metabolism, inflammatory responses, cell senescence, cell stress, and cell migration. These changes in cell attributes and behavior are very important for therapeutic purposes. For this reason, their investigation can play a significant role in the direction of the researchers'.

摘要

间充质基质/干细胞 (MSCs) 通过多种机制发挥其治疗作用,包括分化能力、产生不同的生长因子、免疫调节因子和细胞外囊泡 (EVs)。除了提到的机制外,MSCs 治疗潜力的一个新方面最近引起了关注,这是通过线粒体转移实现的。在研究中使用了各种 MSCs 线粒体转移方法来利用其治疗潜力。在这些方法中,MSCs 移植后的细胞间接触、EVs 介导的线粒体转移以及使用分离的 MSCs 线粒体 (MSCs-mt) 已得到充分研究。病理条件会影响受损微环境中的细胞,并导致细胞线粒体损伤。由于细胞中线粒体功能的缺陷导致 ATP 产生减少和随后的细胞死亡,因此恢复线粒体含量、功能和止血可以影响受损细胞的功能。各种研究表明,MSCs 线粒体向其他细胞的转移可以影响增殖、分化、细胞代谢、炎症反应、细胞衰老、细胞应激和细胞迁移等重要过程。这些细胞属性和行为的变化对于治疗目的非常重要。因此,对它们的研究可以为研究人员指明方向。

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