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源自129/SvEv和C57BL/6的小鼠胚胎干细胞系的建立及嵌合体分析

Establishment and chimera analysis of 129/SvEv- and C57BL/6-derived mouse embryonic stem cell lines.

作者信息

Auerbach W, Dunmore J H, Fairchild-Huntress V, Fang Q, Auerbach A B, Huszar D, Joyner A L

机构信息

Skirball Institute of Biomolecular Medicine, New York University School of Medicine, NY 10016, USA.

出版信息

Biotechniques. 2000 Nov;29(5):1024-8, 1030, 1032. doi: 10.2144/00295st04.

DOI:10.2144/00295st04
PMID:11084865
Abstract

Hundreds of new mutant mouse lines are being produced annually using gene targeting and gene trap approaches in embryonic stem (ES) cells, and the number is expected to continue to grow as the human and mouse genome projects progress. The availability of robust ES cell lines and a simple technology for making chimeras is more attractive now than ever before. We established several new ES cell lines from 129/SvEv and C57BL/6 mice and tested their ability to contribute to the germline following blastocyst injections and/or the less expensive and easier method of morula-ES cell aggregation. Using morula aggregation to produce chimeras, five newly derived 129/SvEv and two C57BL/6 ES cell lines tested at early passages were found to contribute extensively to chimeras and produce germline-transmitting male chimeras. Furthermore, the two 129S/vEv ES cell lines that were tested and one of the C57BL/6 ES cell lines were able to maintain these characteristics after many passages in vitro. Our results indicate that the ability of ES cells to contribute strongly to chimeras following aggregation with outbred embryos is a general property of early passage ES cells and can be maintained for many passages. C56BL/6-derived ES cell lines, however, have a greater tendency than 129-derived ES cell lines to lose their ability to colonize the germline.

摘要

每年通过在胚胎干细胞(ES细胞)中使用基因靶向和基因捕获方法可培育出数百种新的突变小鼠品系,并且随着人类和小鼠基因组计划的推进,这一数量有望持续增长。强大的ES细胞系以及一种简单的制作嵌合体的技术,如今比以往任何时候都更具吸引力。我们从129/SvEv和C57BL/6小鼠中建立了几个新的ES细胞系,并测试了它们在囊胚注射后和/或采用更便宜且更简便的桑椹胚-ES细胞聚集方法后对种系的贡献能力。利用桑椹胚聚集来制作嵌合体,发现在早期传代时测试的5个新衍生的129/SvEv和2个C57BL/6 ES细胞系对嵌合体有广泛贡献,并产生了能传递种系的雄性嵌合体。此外,经过测试的2个129S/vEv ES细胞系和1个C57BL/6 ES细胞系之一在体外多次传代后仍能保持这些特性。我们的结果表明,ES细胞与远交胚胎聚集后对嵌合体有强烈贡献的能力是早期传代ES细胞的普遍特性,并且可以维持许多代。然而,源自C56BL/6的ES细胞系比源自129的ES细胞系更倾向于失去其定殖于种系的能力。

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