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高增殖率对于基于层粘连蛋白-521 的人多能干细胞培养物中重现性和标准化类胚体形成至关重要。

A High Proliferation Rate is Critical for Reproducible and Standardized Embryoid Body Formation from Laminin-521-Based Human Pluripotent Stem Cell Cultures.

机构信息

Research Group Reproduction and Genetics, Faculty of Medicine and Pharmacy, Vrije Universiteit Brussel, Laarbeeklaan 103, 1090, Brussels, Belgium.

出版信息

Stem Cell Rev Rep. 2016 Dec;12(6):721-730. doi: 10.1007/s12015-016-9679-z.

Abstract

When aiming for homogenous embryoid body (EB) differentiation, the use of equal-sized EBs is required to avoid a size-induced differentiation bias. In this study we developed an efficient and standardized EB formation protocol for human pluripotent stem cells (hPSC) cultured in a laminin-521-based xeno-free system. As the cell proliferation rate of the cells growing on laminin-521 strongly affected the efficiency of aggregate formation, we found that recently passaged cells, as well as the addition of ROCK inhibitor, were essential for reproducible EB formation from hPSC single-cell suspensions. EBs could be obtained in a variety of differentiation media, in 96-well round-bottom plates and in hanging drops. Gene expression studies on differentially sized EBs from three individual human embryonic stem cell lines demonstrated that the medium used for differentiation influenced the differentiation outcome to a much greater extent than the number of cells used for the initial EB formation. Our findings give a new insight into factors that influence the EB formation and differentiation process. This optimized method allows us to easily manipulate EB formation and provide an excellent starting point for downstream EB-based differentiation protocols.

摘要

当目标是同质胚胎体 (EB) 分化时,需要使用大小相等的 EB 来避免大小诱导的分化偏差。在这项研究中,我们为在基于层粘连蛋白-521 的无动物培养系统中培养的人多能干细胞 (hPSC) 开发了一种高效且标准化的 EB 形成方案。由于在层粘连蛋白-521 上生长的细胞的增殖率强烈影响聚集形成的效率,我们发现最近传代的细胞以及添加 ROCK 抑制剂对于从 hPSC 单细胞悬浮液中可重复形成 EB 至关重要。EB 可在各种分化培养基中、96 孔平底圆底微孔板中和悬滴中获得。对来自三个个体人胚胎干细胞系的不同大小的 EB 的基因表达研究表明,用于分化的培养基对分化结果的影响要比用于初始 EB 形成的细胞数量大得多。我们的发现为影响 EB 形成和分化过程的因素提供了新的见解。这种优化的方法使我们能够轻松地操纵 EB 的形成,并为基于 EB 的下游分化方案提供了一个极好的起点。

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