Mitochondrial Donation As a Mechanism of Participation of Mesenchymal Stromal Cells in Regenerative Processes

IF 1.1 Q4 CELL BIOLOGY
A. D. Krupnova, D. A. Tsomartova, E. V. Chereshneva, M. Yu. Ivanova, E. S. Tsomartova, T. A. Lomanovskaya, M. S. Pavlova, O. V. Payushina
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引用次数: 0

Abstract

Mesenchymal stromal cells (MSCs) are universal regulators of regenerative processes due to their ability to paracrine release of regulatory molecules or to replace dead cells by differentiation in the appropriate direction. Recently, another mechanism for the beneficial effects of MSCs on damaged tissues has been discovered, namely transfer of mitochondria into its cells in response to stress signals. MSCs can transfer mitochondria through tunnel nanotubes forming a connecting bridge between cells, through gap junctions, by release as part of extracellular vesicles or in the free form, as well as by complete or partial fusion with recipient cells. In the damaged cells that received mitochondria from MSCs, the disturbed energy metabolism is restored and oxidative stress is reduced, which is accompanied by increased survival, and in some cases also by increased proliferation or changes in differentiation status. Restoration of energetics after mitochondria transfer from MSCs has a beneficial effect on functional activity of recipient cells and promotes suppression of inflammatory reactions. It has been repeatedly demonstrated on models of damage of various organs in experimental animals that the transfer of mitochondria from MSCs to target cells makes a significant contribution to the therapeutic efficacy of MSCs. Therefore, methods to enhance mitochondrial donation are currently being searched for. However, it should be taken into account that MSCs are able to transfer mitochondria to malignant cells, thus stimulating tumor growth and increasing its resistance to chemotherapy. These data make us cautious about the prospects of using MSCs in cell therapy, but, on the other hand, they can serve as a basis for searching for new therapeutic targets in the treatment of cancer.

线粒体捐赠作为间充质间质细胞参与再生过程的机制
间充质基质细胞(MSCs)是再生过程的普遍调节剂,因为它们具有旁分泌调节分子或通过向适当方向分化取代死亡细胞的能力。最近,MSCs对受损组织有益作用的另一种机制被发现,即线粒体在应激信号的响应下转移到其细胞中。间充质干细胞可以通过形成细胞间连接桥的隧道纳米管、通过间隙连接、作为细胞外囊泡的一部分或以自由形式释放、以及与受体细胞完全或部分融合来转移线粒体。在接受MSCs线粒体的受损细胞中,紊乱的能量代谢被恢复,氧化应激减少,伴随着生存的增加,在某些情况下还伴随着增殖增加或分化状态的改变。从间充质干细胞转移线粒体后能量的恢复对受体细胞的功能活性有有益的影响,并促进炎症反应的抑制。在实验动物的各种器官损伤模型中反复证明,线粒体从MSCs转移到靶细胞对MSCs的治疗效果有重要贡献。因此,目前正在寻找增强线粒体捐赠的方法。然而,应该考虑到MSCs能够将线粒体转移到恶性细胞中,从而刺激肿瘤生长,增加其对化疗的抵抗力。这些数据使我们对MSCs在细胞治疗中的应用前景持谨慎态度,但另一方面,它们可以作为寻找癌症治疗新靶点的基础。
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来源期刊
CiteScore
1.40
自引率
0.00%
发文量
28
期刊介绍: Biochemistry (Moscow), Supplement Series A: Membrane and Cell Biology   is an international peer reviewed journal that publishes original articles on physical, chemical, and molecular mechanisms that underlie basic properties of biological membranes and mediate membrane-related cellular functions. The primary topics of the journal are membrane structure, mechanisms of membrane transport, bioenergetics and photobiology, intracellular signaling as well as membrane aspects of cell biology, immunology, and medicine. The journal is multidisciplinary and gives preference to those articles that employ a variety of experimental approaches, basically in biophysics but also in biochemistry, cytology, and molecular biology. The journal publishes articles that strive for unveiling membrane and cellular functions through innovative theoretical models and computer simulations.
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