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球体培养系统方法及其在间充质干细胞中的应用。

Spheroid Culture System Methods and Applications for Mesenchymal Stem Cells.

机构信息

Department of Integrative Engineering, Chung-Ang University, Seoul 06974, Korea.

Department of Medical Biotechnology, Dongguk University, Seoul 06974, Korea.

出版信息

Cells. 2019 Dec 12;8(12):1620. doi: 10.3390/cells8121620.

Abstract

Owing to the importance of stem cell culture systems in clinical applications, researchers have extensively studied them to optimize the culture conditions and increase efficiency of cell culture. A spheroid culture system provides a similar physicochemical environment in vivo by facilitating cell-cell and cell-matrix interaction to overcome the limitations of traditional monolayer cell culture. In suspension culture, aggregates of adjacent cells form a spheroid shape having wide utility in tumor and cancer research, therapeutic transplantation, drug screening, and clinical study, as well as organic culture. There are various spheroid culture methods such as hanging drop, gel embedding, magnetic levitation, and spinner culture. Lately, efforts are being made to apply the spheroid culture system to the study of drug delivery platforms and co-cultures, and to regulate differentiation and pluripotency. To study spheroid cell culture, various kinds of biomaterials are used as building forms of hydrogel, film, particle, and bead, depending upon the requirement. However, spheroid cell culture system has limitations such as hypoxia and necrosis in the spheroid core. In addition, studies should focus on methods to dissociate cells from spheroid into single cells.

摘要

由于干细胞培养系统在临床应用中的重要性,研究人员对其进行了广泛的研究,以优化培养条件并提高细胞培养效率。球体培养系统通过促进细胞-细胞和细胞-基质相互作用,提供类似于体内的物理化学环境,从而克服传统单层细胞培养的局限性。在悬浮培养中,相邻细胞的聚集形成球体形状,在肿瘤和癌症研究、治疗性移植、药物筛选、临床研究以及有机培养中具有广泛的应用。有各种球体培养方法,如悬滴法、凝胶包埋法、磁悬浮法和旋转培养法。最近,人们正在努力将球体培养系统应用于药物输送平台和共培养物的研究,以及调节分化和多能性。为了研究球体细胞培养,可以根据需要使用各种生物材料作为水凝胶、薄膜、颗粒和珠粒的构建形式。然而,球体细胞培养系统存在球体核心缺氧和坏死等局限性。此外,应该关注将球体细胞从球体中解离成单个细胞的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9566/6953111/524267dd5703/cells-08-01620-g001.jpg

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