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更换培养基时通过移液操作产生的液体流动对人诱导多能干细胞聚集体变形的影响。

Effect of liquid flow by pipetting during medium change on deformation of hiPSC aggregates.

作者信息

Kato Yuma, Matsumoto Takuya, Kino-Oka Masahiro

机构信息

Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamada-oka, Suita, Osaka, 565-0871, Japan.

Institute for Innovation, Ajinomoto Co., Inc., 1-1 Suzukicho, Kawasaki-ku, Kawasaki, Kanagawa, 210-8681, Japan.

出版信息

Regen Ther. 2019 Apr 25;12:20-26. doi: 10.1016/j.reth.2019.03.004. eCollection 2019 Dec 15.

Abstract

INTRODUCTION

Maintaining the pluripotency and homogeneity of human induced pluripotent stem cells (hiPSCs) requires stable culture conditions with consistent medium change. In this study, we evaluated the performance of medium change by machine vs. medium change performed manually in terms of their impact on the aggregate shape of hiPSCs.

METHODS

Aggregates of two hiPSC lines (1383D2 and Tic) were cultured, and the medium change was conducted either manually or with a machine. The populational homogeneity in aggregate shape was determined based on the projected aggregate area for size expansion as well as the circularity for spherical morphology.

RESULTS

In the case of manually performed medium changes, the size of 1383D2 aggregates expanded homogeneously, maintaining its spherical morphology as culture duration increased, while spherical morphology was deformed in Tic aggregates, which had a heterogeneous population in terms of shape. In the case of medium change performed by a machine under a low flux of liquid flow, cultures of both aggregates showed homogeneous populations without deformation, although a high flux led to a heterogeneous population. The heterogeneous population observed in manually performed medium change was caused by the low stability of motion. In addition, time-lapse observation revealed that the Tic aggregates underwent tardive deformation with cellular protrusions from the aggregate surface after medium change with high flux. Histological analysis revealed a spatial heterogeneity of collagen type I inside 1383D2 aggregates, which had a shell structure with strong formation of collagen type I at the periphery of the aggregates, while Tic aggregates did not have a shell structure, suggesting that the shell structure prevented aggregate deformation.

CONCLUSION

Medium change by a machine led to a homogeneous population of aggregate shapes. Liquid flow caused tardive deformation of aggregates, but the shell structure of collagen type I in aggregates maintained its spherical shape.

摘要

引言

维持人诱导多能干细胞(hiPSC)的多能性和同质性需要稳定的培养条件以及一致的换液操作。在本研究中,我们评估了机器换液与手动换液在对hiPSC聚集体形状的影响方面的性能。

方法

培养两个hiPSC系(1383D2和Tic)的聚集体,并通过手动或机器进行换液。根据聚集体大小扩展的投影面积以及球形形态的圆度来确定聚集体形状的群体同质性。

结果

在手动换液的情况下,随着培养时间的增加,1383D2聚集体的大小均匀扩展,保持其球形形态,而Tic聚集体的球形形态发生变形,其形状存在异质性群体。在低液体流速下通过机器进行换液的情况下,两个聚集体的培养物均显示出均匀群体且无变形,尽管高流速会导致群体异质性。手动换液中观察到的异质性群体是由运动的低稳定性引起的。此外,延时观察显示,在高流速换液后,Tic聚集体会出现迟发性变形,聚集体表面有细胞突起。组织学分析显示,1383D2聚集体内部I型胶原存在空间异质性,其具有壳结构,在聚集体周边I型胶原形成强烈,而Tic聚集体没有壳结构,这表明壳结构可防止聚集体变形。

结论

机器换液导致聚集体形状的群体均匀。液体流动会导致聚集体迟发性变形,但聚集体中I型胶原的壳结构维持了其球形形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4b/6933458/585a01f646d8/gr1.jpg

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