首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >Mesenchymal stem cell therapy for the treatment of inflammatory diseases: Challenges, opportunities, and future perspectives
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Mesenchymal stem cell therapy for the treatment of inflammatory diseases: Challenges, opportunities, and future perspectives

机译:间充质干细胞治疗炎症性疾病:挑战,机遇和未来的观点

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摘要

Mesenchymal stem cells (MSCs) are promising alternative agents for the treatment of inflammatory disorders due to their immunomodulatory functions, and several clinical trials on MSC-based products are currently being conducted. In this review, we discuss recent progress made on the use of MSCs as immunomodulatory agents, developmental challenges posed by MSC-based therapy, and the strategies being used to overcome these challenges. In this context, current understanding of the mechanisms responsible for MSC interactions with the immune system and the molecular responses of MSCs to inflammatory signals are discussed. The immunosuppressive activities of MSCs are initiated by cell-to-cell contact and the release of immuno-regulatory molecules. By doing so, MSCs can inhibit the proliferation and function of T cells, natural killer cells, B cells, and dendritic cells, and can also increase the proliferation of regulatory T cells. However, various problems, such as low transplanted cell viability, poor homing and engraftment into injured tissues, MSC heterogeneity, and lack of adequate information on optimum MSC doses impede clinical applications. On the other hand, it has been shown that the immunomodulatory activities and viabilities of MSCs might be enhanced by 3D-cultured systems, genetic modifications, preconditioning, and targeted-delivery.
机译:间充质干细胞(MSCs)是由于其免疫调节功能而治疗炎性疾病的有前途的替代剂,目前正在进行几种对MSC的产品的临床试验。在这篇综述中,我们讨论了最近对使用MSCs作为免疫调节剂的进展,基于MSC的治疗的发育挑战以及用于克服这些挑战的策略。在这种情况下,讨论了目前讨论了对与免疫系统相互作用的机制以及MSCs对炎症信号的分子反应的理解。通过细胞对细胞接触和免疫调节分子的释放引发MSCs的免疫抑制活性。通过这样做,MSCs可以抑制T细胞,天然杀伤细胞,B细胞和树突细胞的增殖和功能,并且还可以增加调节性T细胞的增殖。然而,各种问题,例如低移植的细胞活力,差归巢和植入到受伤的组织,MSC异质性和缺乏关于最佳MSC剂量的足够信息中妨碍了临床应用。另一方面,已经表明,使用3D培养的系统,遗传修饰,预处理和靶向递送,可以增强MSCs的免疫调节活动和能力。

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