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按照日本法规高效衍生和保存临床级人胚胎干细胞系。

Efficient derivation and banking of clinical-grade human embryonic stem cell lines in accordance with Japanese regulations.

作者信息

Takada Kei, Nakatani Ryoko, Moribe Emiko, Yamazaki-Fujigaki Shizuka, Fujii Mai, Furuta Masayo, Suemori Hirofumi, Kawase Eihachiro

机构信息

Division of Clinical Basis for ES Cell Research, Center for Human ES Cell Research, Institute for Life and Medical Sciences, Kyoto University, 53 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507, Japan.

出版信息

Regen Ther. 2022 Nov 6;21:553-559. doi: 10.1016/j.reth.2022.10.006. eCollection 2022 Dec.

Abstract

INTRODUCTION

We recently established clinical-grade human embryonic stem cell (hESC) line KthES11 in accordance with current good manufacturing practice standards in Japan. Despite this success, the establishment efficiency was very low at 7.1% in the first period.

METHODS

To establish clinical-grade hESC lines, we used xeno-free chemically defined medium StemFit AK03N with the LM-E8 fragments instead of feeder cells. The protocol was then optimized, especially in the early culture phase.

RESULTS

We established five hESC lines (KthES12, KthES13, KthES14, KthES15, and KthES16) with 45.5% efficiency. All five hESC lines showed typical hESC-like morphology, a normal karyotype, pluripotent state, and differentiation potential for all three germ layers. Furthermore, we developed efficient procedures to prepare master cell stocks for clinical-grade hESC lines and an efficient strategy for quality control testing.

CONCLUSIONS

Our master cell stocks of hESC lines may contribute to therapeutic applications using human pluripotent stem cells in Japan and other countries.

摘要

引言

我们最近按照日本现行的良好生产规范标准建立了临床级人胚胎干细胞(hESC)系KthES11。尽管取得了这一成功,但在第一阶段建立效率非常低,仅为7.1%。

方法

为了建立临床级hESC系,我们使用了不含动物成分的化学成分确定培养基StemFit AK03N和LM-E8片段,而不是饲养层细胞。然后对方案进行了优化,特别是在早期培养阶段。

结果

我们以45.5%的效率建立了五个hESC系(KthES12、KthES13、KthES14、KthES15和KthES16)。所有五个hESC系均呈现典型的hESC样形态、正常核型、多能状态以及向所有三个胚层的分化潜能。此外,我们开发了用于制备临床级hESC系主细胞库的高效程序以及质量控制测试的有效策略。

结论

我们的hESC系主细胞库可能有助于在日本和其他国家使用人多能干细胞进行治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8160/9647332/d79fe7dc230e/gr1.jpg

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