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Contribution of Mouse Embryonic Stem Cells and Induced Pluripotent Stem Cells to Chimeras through Injection and Coculture of Embryos

机译:小鼠胚胎干细胞和诱导多能干细胞通过注射和共培养胚胎对嵌合体的贡献。

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摘要

Blastocyst injection and morula aggregation are commonly used to evaluate stem cell pluripotency based on chimeric contribution of the stem cells. To assess the protocols for generating chimeras from stem cells, 8-cell mouse embryos were either injected or cocultured with mouse embryonic stem cells and induced pluripotent stem cells, respectively. Although a significantly higher chimera rate resulted from blastocyst injection, the highest germline contribution resulted from injection of 8-cell embryos with embryonic stem cells. The fully agouti colored chimeras were generated from both injection and coculture of 8-cell embryos with embryonic stem cells. Additionally, microsatellite DNA screening showed that the fully agouti colored chimeras were fully embryonic stem cell derived mice. Unlike embryonic stem cells, the mouse chimeras were only generated from injection of 8-cell embryos with induced pluripotent stem cells and none of these showed germline transmission. The results indicated that injection of 8-cell embryos is the most efficient method for assessing stem cell pluripotency and generating induced pluripotent stem cell chimeras, embryonic stem cell chimeras with germline transmission, and fully mouse embryonic stem cell derived mice.
机译:囊胚注射和桑ula骨聚集通常基于干细胞的嵌合贡献来评估干细胞的多能性。为了评估从干细胞生成嵌合体的方案,分别将8细胞小鼠胚胎注射或与小鼠胚胎干细胞和诱导多能干细胞共培养。尽管胚泡注射显着提高了嵌合率,但生殖细胞的最大贡献是胚胎干细胞注射了8细胞胚胎。全刺突色嵌合体是由8细胞胚胎与胚胎干细胞的注射和共培养产生的。此外,微卫星DNA筛选显示完全刺牙色的嵌合体是完全胚胎干细胞衍生的小鼠。与胚胎干细胞不同,小鼠嵌合体仅由注入诱导多能干细胞的8细胞胚胎产生,而这些均未显示出种系传递。结果表明,注射8细胞胚胎是评估干细胞多能性和产生诱导性多能干细胞嵌合体,具有种系传递功能的胚胎干细胞嵌合体和完全小鼠胚胎干细胞衍生小鼠的最有效方法。

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