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首页> 外文期刊>Journal of cellular biochemistry. >The extracellular vesicles‐derived from mesenchymal stromal cells: A new therapeutic option in regenerative medicine
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The extracellular vesicles‐derived from mesenchymal stromal cells: A new therapeutic option in regenerative medicine

机译:来自间充质基质细胞的细胞外囊泡:再生医学中的新治疗选择

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Abstract Mesenchymal stem cells (MSCs) are adult multipotent cells that due to their ability to homing to damaged tissues and differentiate into specialized cells, are remarkable cells in the field of regenerative medicine. It's suggested that the predominant mechanism of MSCs in tissue repair might be related to their paracrine activity. The utilization of MSCs for tissue repair is initially based on the differentiation ability of these cells; however now it has been revealed that only a small fraction of the transplanted MSCs actually fuse and survive in host tissues. Indeed, MSCs supply the microenvironment with the secretion of soluble trophic factors, survival signals and the release of extracellular vesicles (EVs) such as exosome. Also, the paracrine activity of EVs could mediate the cellular communication to induce cell‐differentiation/self‐renewal. Recent findings suggest that EVs released by MSCs may also be critical in the physiological function of these cells. This review provides an overview of MSC‐derived extracellular vesicles as a hopeful opportunity to advance novel cell‐free therapy strategies that might prevail over the obstacles and risks associated with the use of native or engineered stem cells. EVs are very stable; they can pass the biological barriers without rejection and can shuttle bioactive molecules from one cell to another, causing the exchange of genetic information and reprogramming of the recipient cells. Moreover, extracellular vesicles may provide therapeutic cargo for a wide range of diseases and cancer therapy.
机译:摘要间充质干细胞(MSCs)是成年多能细胞,其由于它们对受损组织和分化成专用细胞的能力而是再生医学领域的显着细胞。这表明MSCs在组织修复中的主要机制可能与其旁静脉活动有关。用于组织修复的MSCs的利用最初基于这些细胞的分化能力;然而,现在已经揭示了只有一小部分移植的MSCs实际上融合并存活在宿主组织中。实际上,MSCS通过分泌可溶性营养因子,生存信号和细胞外囊泡(EVS)的释放等分泌微环境。此外,EVS的旁静脉活性可以介导细胞通信以诱导细胞分化/自我更新。最近的发现表明MSC释放的EVS在这些细胞的生理功能方面也可能是至关重要的。本综述概述了MSC衍生的细胞外囊泡作为推进可能在障碍物和使用本地或工程干细胞相关的障碍物和风险方面推进新的细胞疗法策略的有希望的机会。 EVS非常稳定;它们可以通过抑制的情况通过生物屏障,并且可以将生物活性分子从一个细胞穿梭到另一个细胞,导致遗传信息交换和接受细胞的重新编程。此外,细胞外囊泡可以为各种疾病和癌症治疗提供治疗货物。

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