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3D MSC 球体微环境的特异性:对 MSC 行为和特性的影响。

Specificity of 3D MSC Spheroids Microenvironment: Impact on MSC Behavior and Properties.

机构信息

Laboratory for Experimental Hematology and Stem Cells, Institute for Medical Research, University of Belgrade, Dr. Subotića 4, PO BOX 102, Belgrade, 11129, Serbia.

Institute of Biology and Immunology of Reproduction, Bulgarian Academy of Sciences, 73 Tzarigradsko shoes, 1113, Sofia, Bulgaria.

出版信息

Stem Cell Rev Rep. 2020 Oct;16(5):853-875. doi: 10.1007/s12015-020-10006-9.

Abstract

Mesenchymal stem cells (MSC) have been considered the promising candidates for the regenerative and personalized medicine due to their self-renewal potential, multilineage differentiation and immunomodulatory capacity. Although these properties have encouraged profound MSC studies in recent years, the majority of research has been based on standard 2D culture utilization. The opportunity to resemble in vivo characteristics of cells native niche has been provided by implementation of 3D culturing models such as MSC spheroid formation assesed through cells self-assembling. In this review, we address the current literature on physical and biochemical features of 3D MSC spheroid microenvironment and their impact on MSC properties and behaviors. Starting with the reduction in the cells' dimensions and volume due to the changes in adhesion molecules expression and cytoskeletal proteins rearrangement resembling native conditions, through the microenvironment shifts in oxygen, nutrients and metabolites gradients and demands, we focus on distinctive and beneficial features of MSC in spheroids compared to cells cultured in 2D conditions. By summarizing the data for 3D MSC spheroids regarding cell survival, pluripotency, differentiation, immunomodulatory activities and potential to affect tumor cells growth we highlighted advantages and perspectives of MSC spheroids use in regenerative medicine. Further detailed analyses are needed to deepen our understanding of mechanisms responsible for modified MSC behavior in spheroids and to set future directions for MSC clinical application.

摘要

间充质干细胞(MSC)因其自我更新能力、多向分化潜能和免疫调节能力,被认为是再生医学和个性化医学的有前途的候选者。尽管这些特性鼓励了近年来对 MSC 的深入研究,但大多数研究都是基于标准的 2D 培养利用。通过实施 3D 培养模型,如 MSC 球体形成的评估,通过细胞的自我组装,可以模拟细胞天然基质的体内特性。在这篇综述中,我们讨论了关于 3D MSC 球体微环境的物理和生化特性及其对 MSC 特性和行为的影响的当前文献。首先,由于细胞黏附分子表达和细胞骨架蛋白重排的变化,细胞的尺寸和体积减小,类似于天然条件,通过氧气、营养物质和代谢物梯度和需求的微环境变化,我们专注于 MSC 在球体中与在 2D 条件下培养的细胞相比具有独特和有益的特性。通过总结关于 3D MSC 球体的细胞存活率、多能性、分化、免疫调节活性以及影响肿瘤细胞生长的潜力的数据,我们强调了 MSC 球体在再生医学中的优势和应用前景。需要进一步的详细分析来加深我们对球体中 MSC 行为改变的机制的理解,并为 MSC 的临床应用设定未来的方向。

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