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“预激”间充质基质细胞在造血干细胞移植中的应用:现状与展望。

Application of "Primed" Mesenchymal Stromal Cells in Hematopoietic Stem Cell Transplantation: Current Status and Future Prospects.

机构信息

Symbiosis Centre for Stem Cell Research, Symbiosis School of Biological Sciences, Symbiosis International University, Pune, India.

出版信息

Stem Cells Dev. 2019 Nov 15;28(22):1473-1479. doi: 10.1089/scd.2019.0149. Epub 2019 Oct 29.

Abstract

Regenerative potential of mesenchymal stem/stromal cells (MSCs) has led to their application in various cellular therapies. Since in vivo these cells are present in very low numbers, they need expansion in culture to get clinically relevant numbers; however, such long-term ex vivo manipulation leads to loss of their regenerative capacity. Although use of naïve MSCs is still the most common approach used in various therapies, several strategies, both genetic and pharmacological, are being tried out to boost the regenerative capacity of in vitro expanded MSCs. Such manipulations are very commonly reported for regeneration of various tissues like bone, cartilage, kidney, pancreas, and others. Likewise, several efforts have been made to investigate priming of MSCs to enhance their immunoregulatory activity, but such efforts have not been made to the same extent for enhancing the efficacy of hematopoietic stem cell transplantation (HSCT). Development of such approaches for HSCT would not only be useful for enhancing the transplantation efficacy of cord blood cells, which are fewer in numbers, and aged HSCs, which could be functionally compromised, but also for genetically modified HSCs, which are likely to be both, fewer in number and functionally compromised. This review specifically deals with application of "primed" MSCs in the scenario of HSCT.

摘要

间充质干细胞(MSCs)的再生潜力使其在各种细胞疗法中得到应用。由于这些细胞在体内的数量非常少,因此需要在体外进行扩增以获得临床相关数量;然而,这种长期的体外操作会导致其再生能力的丧失。尽管使用未成熟的 MSCs 仍然是各种疗法中最常用的方法,但目前正在尝试几种遗传和药理学策略来提高体外扩增的 MSCs 的再生能力。这些操作在骨骼、软骨、肾脏、胰腺等各种组织的再生中经常被报道。同样,人们也做出了一些努力来研究 MSCs 的预刺激以增强其免疫调节活性,但在增强造血干细胞移植(HSCT)的疗效方面并没有进行同样程度的努力。为 HSCT 开发这些方法不仅有助于提高数量较少的脐带血细胞和可能功能受损的老化 HSCs 的移植疗效,而且有助于提高数量较少且功能受损的基因修饰 HSCs 的疗效。这篇综述专门讨论了“预刺激”MSCs 在 HSCT 中的应用。

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