首页> 美国卫生研究院文献>The Review of Diabetic Studies : RDS >Genetic Analysis of Type 1 Diabetes: Embryonic Stem Cells as New Tools to Unlock Biological Mechanisms in Type 1 Diabetes
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Genetic Analysis of Type 1 Diabetes: Embryonic Stem Cells as New Tools to Unlock Biological Mechanisms in Type 1 Diabetes

机译:1型糖尿病的遗传分析:胚胎干细胞作为揭示1型糖尿病生物学机制的新工具

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摘要

The nonobese diabetic (NOD) mouse has provided an important animal model for studying the mechanism and genetics of type 1 diabetes over the past 30 years. Arguably, the bio-breeding (BB) rat model may be an even closer phenotypic mimic of the typical human disease. A large number of distinct genetic traits which influence diabetes development have been defined through an extraordinary effort, most conspicuously in the mouse model. However, in both NOD and BB models the lack of availability of robust means for experimental genetic manipulation has restricted our understanding of the mechanisms underlying this spontaneous autoimmune disease. Recent developments in the derivation of embryonic stem (ES) cells have the potential to transform this picture. We argue here that targeting of NOD strain ES cells can bring much needed certainty to our present understanding of the genetics of type 1 diabetes in the NOD mouse. In addition, ES cells can play important roles in the future, in both the NOD mouse and BB rat models, through the generation of new tools to investigate the mechanisms by which genetic variation acts to promote diabetes.
机译:在过去30年中,非肥胖糖尿病(NOD)小鼠为研究1型糖尿病的机制和遗传学提供了重要的动物模型。可以说,生物繁殖(BB)大鼠模型可能是典型人类疾病的更接近表型的模拟物。已经通过不懈的努力定义了影响糖尿病发展的许多独特遗传特征,其中最明显的是在小鼠模型中。然而,在NOD和BB模型中,缺乏用于实验遗传操作的可靠方法的使用限制了我们对这种自发性自身免疫疾病潜在机制的理解。胚胎干(ES)细胞衍生的最新进展有可能改变这种状况。我们在这里辩称,以NOD菌株ES细胞为靶标可以为我们目前对NOD小鼠1型糖尿病遗传学的理解带来非常需要的确定性。此外,通过产生新的工具来研究遗传变异促进糖尿病的机制,ES细胞在NOD小鼠和BB大鼠模型中都可以在未来发挥重要作用。

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