Criteria that optimize the potential of murine embryonic stem cells for in vitro and in vivo developmental studies.

D G Brown, M A Willington, I Findlay, A L Muggleton-Harris
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引用次数: 11

Abstract

Cultured mouse embryonic stem (ES) cells are used for both in vitro and in vivo studies. The uncommitted pluripotent cells provide a model system with which to study cellular differentiation and development; they can also be used as vectors to carry specific mutations into the mouse genome by homologous recombination. To ensure successful integration into the germ line, competent totipotent diploid ES cell lines are selected using a cell injection bioassay that is both time consuming and technically demanding. The prolonged in vitro culture of rapidly dividing ES cells can lead to accumulated changes and chromosomal abnormalities that will compromise the biological function and abrogate germ line transmission of chimeric mice carrying novel genetic mutations. Such in vitro conditions will vary between individual laboratories; for example, differences in the serums used for maintenance. Using a number of different criteria we attempt in this paper to define the parameters that we found to be key factors for optimization of the biological potential of established ES cell lines. The successful integration into the germ line is dependant on acquiring or deriving a competent totipotent mouse ES diploid cell line. In this paper parameters and criteria are defined which we found to be key factors for the optimization of the biological potential of established ES cell lines.

优化小鼠胚胎干细胞体外和体内发育研究潜力的标准。
培养的小鼠胚胎干细胞(ES)可用于体外和体内研究。非承诺多能细胞为研究细胞分化和发育提供了一个模型系统;它们也可以作为载体,通过同源重组将特定突变携带到小鼠基因组中。为了确保成功整合到种系中,使用细胞注射生物测定法选择有能力的全能性二倍体胚胎干细胞系,这既耗时又技术要求高。快速分裂的胚胎干细胞在体外培养时间过长,会导致累积的变化和染色体异常,从而损害携带新基因突变的嵌合小鼠的生物学功能并取消种系传递。这种体外条件在各个实验室之间会有所不同;例如,用于维护的血清的差异。使用一些不同的标准,我们试图在本文中定义的参数,我们发现是关键因素的优化建立胚胎干细胞系的生物学潜力。成功整合到种系依赖于获得或衍生一个全能小鼠胚胎干细胞二倍体细胞系。在本文中,我们定义了参数和标准,我们发现这些参数和标准是优化已建立的胚胎干细胞系生物学潜力的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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