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首页> 外文期刊>Frontiers in Cell and Developmental Biology >How Do Mesenchymal Stem Cells Influence or Are Influenced by Microenvironment through Extracellular Vesicles Communication?
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How Do Mesenchymal Stem Cells Influence or Are Influenced by Microenvironment through Extracellular Vesicles Communication?

机译:间充质干细胞如何通过细胞外囊泡通讯影响微环境或受到微环境影响?

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摘要

Mesenchymal stem cells (MSCs) are widely used in cell therapy and tissue engineering thanks to their self-renewal, their multipotency and their immunomodulatory properties that make them an attractive tool for regenerative medicine. A large part of MSCs positive effects is due to their secretion products which participate in creating a favorable microenvironment and closely relate these cells to other cell types. Extracellular vesicles (EVs) belong to cellular secretions. They are produced by cells continuously or after stimulation (e.g. calcium flux, cellular stress) and act in tissue homeostasis and intercellular communication. The understanding of the role of EVs is growing, more particularly their impact on cell migration, differentiation or immunomodulation. EVs derived from MSCs show these interesting properties that may be considered in therapeutics, although they can have adverse effects by facilitating cancer propagation. Moreover, MSC behavior may also be influenced (proliferation, differentiation) by EVs derived from other donor cells. The aim of this mini review is to summarize the two-way communication between MSCs and other cell types, and how they can affect each other with their microenvironment through EVs. On the one hand, the manuscript presents the influence of MSC-derived EVs on diverse recipient cells and on the other hand, the effects of EVs derived from various donor cells on MSCs. The discrepancies between cancer cells and MSCs communication according to the sources of MSCs but also the tumor origins are also mentioned.
机译:间充质干细胞(MSCs)具有自我更新,多能性和免疫调节特性,因而广泛用于细胞治疗和组织工程,使其成为再生医学的诱人工具。 MSC的大部分积极作用归因于它们的分泌产物,这些分泌产物参与创造有利的微环境并使这些细胞与其他细胞类型密切相关。细胞外囊泡(EVs)属于细胞分泌物。它们是由细胞连续或刺激后产生的(例如钙通量,细胞应激),并在组织稳态和细胞间通讯中起作用。对电动汽车的作用的了解正在增长,尤其是它们对细胞迁移,分化或免疫调节的影响。衍生自MSC的EV具有这些有趣的特性,可在治疗中加以考虑,尽管它们可能通过促进癌症扩散而产生不利影响。此外,MSC行为也可能受到其他供体细胞衍生的电动汽车的影响(增殖,分化)。这次小型回顾的目的是总结MSC与其他细胞类型之间的双向通信,以及它们如何通过EV在其微环境中相互影响。一方面,手稿提出了MSC衍生的EV对不同受体细胞的影响,另一方面,衍生自各种供体细胞的EV对MSC的影响。还提到了癌细胞与MSCs通讯之间的差异,不仅取决于MSCs的来源,而且还取决于肿瘤的起源。

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