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间充质干细胞分泌组:无细胞再生医学的基石。

Mesenchymal stem cells secretome: The cornerstone of cell-free regenerative medicine.

作者信息

González-González Alberto, García-Sánchez Daniel, Dotta Monica, Rodríguez-Rey José C, Pérez-Campo Flor M

机构信息

Department of Molecular Biology_IDIVAL, Faculty of Medicine, University of Cantabria, Santander 39011, Cantabria, Spain.

出版信息

World J Stem Cells. 2020 Dec 26;12(12):1529-1552. doi: 10.4252/wjsc.v12.i12.1529.

Abstract

Mesenchymal stem cells (MSCs) are the most frequently used stem cells in clinical trials due to their easy isolation from various adult tissues, their ability of homing to injury sites and their potential to differentiate into multiple cell types. However, the realization that the beneficial effect of MSCs relies mainly on their paracrine action, rather than on their engraftment in the recipient tissue and subsequent differentiation, has opened the way to cell-free therapeutic strategies in regenerative medicine. All the soluble factors and vesicles secreted by MSCs are commonly known as secretome. MSCs secretome has a key role in cell-to-cell communication and has been proven to be an active mediator of immune-modulation and regeneration both and . Moreover, the use of secretome has key advantages over cell-based therapies, such as a lower immunogenicity and easy production, handling and storage. Importantly, MSCs can be modulated to alter their secretome composition to better suit specific therapeutic goals, thus, opening a large number of possibilities. Altogether these advantages now place MSCs secretome at the center of an important number of investigations in different clinical contexts, enabling rapid scientific progress in this field.

摘要

间充质干细胞(MSCs)是临床试验中最常用的干细胞,因为它们易于从各种成人组织中分离,具有归巢到损伤部位的能力以及分化为多种细胞类型的潜力。然而,人们认识到MSCs的有益作用主要依赖于其旁分泌作用,而不是其在受体组织中的植入和随后的分化,这为再生医学中的无细胞治疗策略开辟了道路。MSCs分泌的所有可溶性因子和囊泡统称为分泌组。MSCs分泌组在细胞间通讯中起关键作用,并且已被证明是免疫调节和再生的积极介质。此外,与基于细胞的疗法相比,分泌组的使用具有关键优势,例如免疫原性较低以及易于生产、处理和储存。重要的是,可以对MSCs进行调节以改变其分泌组组成,以更好地适应特定的治疗目标,从而开启了大量可能性。总之,这些优势现在使MSCs分泌组成为不同临床背景下众多研究的核心,推动了该领域的快速科学进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfb6/7789121/df0751003f63/WJSC-12-1529-g001.jpg

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