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基于细胞接种密度和细胞系特异性的灵长类 iPS 细胞体外分化为心肌细胞的效率。

The Efficiency of In Vitro Differentiation of Primate iPSCs into Cardiomyocytes Depending on Their Cell Seeding Density and Cell Line Specificity.

机构信息

Research Platform Stem Cell Biology and Regeneration, German Primate Center-Leibniz Institute for Primate Research, Kellnerweg 4, 37077 Göttingen, Germany.

DZHK (German Centre for Cardiovascular Research), Partner Site Lower Saxony, 37077 Göttingen, Germany.

出版信息

Int J Mol Sci. 2024 Aug 2;25(15):8449. doi: 10.3390/ijms25158449.

Abstract

A thorough characterization of induced pluripotent stem cells (iPSCs) used with in vitro models or therapeutics is essential. Even iPSCs derived from a single donor can exhibit variability within and between cell lines, which can lead to heterogeneity in results and hinder the promising future of cell replacement therapies. In this study, the cell seeding density of human and rhesus monkey iPSCs was tested to maximize the cell line-specific yield of the generated cardiomyocytes. We found that, despite using the same iPSC generation and differentiation protocols, the cell seeding density for the cell line-specific best differentiation efficiency could differ by a factor of four for the four cell lines used here. In addition, the cell lines showed differences in the range of cell seeding densities that they could tolerate without the severe loss of differentiation efficiency. Overall, our data show that the cell seeding density is a critical parameter for the differentiation inefficiency of primate iPSCs to cardiomyocytes and that iPSCs generated with the same episomal approach still exhibit considerable heterogeneity. Therefore, individual characterization of iPSC lines is required, and functional comparability with in vivo processes must be ensured to warrant the translatability of in vitro research with iPSCs.

摘要

对用于体外模型或治疗的诱导多能干细胞 (iPSC) 进行全面的特征描述是至关重要的。即使是源自单个供体的 iPSC 也会在细胞系内和细胞系之间表现出变异性,这可能导致结果的异质性,并阻碍细胞替代疗法的美好未来。在这项研究中,我们测试了人源和恒河猴 iPSC 的细胞接种密度,以最大限度地提高生成的心肌细胞的细胞系特异性产量。我们发现,尽管使用相同的 iPSC 生成和分化方案,但对于这里使用的四种细胞系,细胞系特异性最佳分化效率的细胞接种密度可能相差四倍。此外,细胞系在可以耐受而不会严重降低分化效率的细胞接种密度范围内存在差异。总体而言,我们的数据表明,细胞接种密度是灵长类 iPSC 向心肌细胞分化效率低的一个关键参数,并且使用相同的附加型方法生成的 iPSC 仍然表现出相当大的异质性。因此,需要对 iPSC 系进行单独的特征描述,并确保与体内过程的功能可比性,以保证 iPSC 的体外研究具有可转化性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8fe/11312487/27c3c90a7fd0/ijms-25-08449-g001.jpg

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