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Improved Experimental Procedures for Achieving Efficient Germ Line Transmission of Nonobese Diabetic (NOD)-Derived Embryonic Stem Cells

机译:改进的实验程序以实现非肥胖糖尿病(NOD)衍生的胚胎干细胞的有效生殖系传递。

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摘要

The manipulation of a specific gene in NOD mice, the best animal model for insulin-dependent diabetes mellitus (IDDM), must allow for the precise characterization of the functional involvement of its encoded molecule in the pathogenesis of the disease. Although this has been attempted by the cross-breeding of NOD mice with many gene knockout mice originally created on the 129 or C57BL/6 strain background, the interpretation of the resulting phenotype(s) has often been confusing due to the possibility of a known or unknown disease susceptibility locus (e.g., Idd locus) cosegregating with the targeted gene from the diabetes-resistant strain. Therefore, it is important to generate mutant mice on a pure NOD background by using NOD-derived embryonic stem (ES) cells. By using the NOD ES cell line established by Nagafuchi and colleagues in 1999 (FEBSLett., 455, 101–104), the authors reexamined various conditions in the context of cell culture, DNA transfection, and blastocyst injection,and achieved a markedly improved transmissionefficiency of these NOD ES cells into the mouse germ line.These modifications will enable gene targeting on a “pure” NOD background with high efficiency, and contribute toclarifying the physiological roles of a variety of genes in thedisease course of IDDM.
机译:在NOD小鼠(胰岛素依赖型糖尿病(IDDM)的最佳动物模型)中对特定基因的操作必须能够准确表征其编码分子在疾病发病机理中的功能。尽管这是通过将NOD小鼠与最初在129或C57BL / 6菌株背景上创建的许多基因敲除小鼠进行杂交来尝试的,但由于已知的可能性,对产生的表型的解释通常令人困惑或未知疾病易感性基因座(例如,Idd基因座)与来自糖尿病抗性菌株的靶基因共分离。因此,重要的是通过使用NOD衍生的胚胎干(ES)细胞在纯NOD背景下生成突变小鼠。通过使用Nagafuchi及其同事于1999年建立的NOD ES细胞系(FEBSLett。,455,101–104),作者在细胞培养,DNA转染和胚泡注射的背景下重新检查了各种条件,并明显改善了传动这些NOD ES细胞进入小鼠种系的效率。这些修饰将使基因能够高效地靶向“纯” NOD背景,并有助于阐明各种基因的生理作用IDDM的病程。

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