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Generation of genetically modified animals using spermatogonial stem cells

机译:使用精原干细胞产生转基因动物

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Spermatogonial stem cells (SSCs) provide the foundation for spermatogenesis, and are unique tissue-specific stem cells because of their ability to transmit genetic information to offspring. Generation of knockout mice using mouse SSCs became feasible after the successful establishment of protocols for the transplantation and long-term culture of these cells, called germline stem (GS) cells. Furthermore, SSCs can acquire pluripotentiality similar to that of embryonic stem (ES) cells, in addition to their highly differentiated spermatogenic potential. These ES-like cells, called multipotent GS (mGS) cells, are capable of generating knockout mice in a manner similar to that of ES cells. The use of GS and mGS cells for animal transgenesis has added a new dimension to gene-targeting technology using ES cells and somatic cell nuclear transfer, which has limited application. Furthermore, for regenerative medicine purposes, the use of mGS will settle problems such as ethics issues and immunological rejection associated with ES cells, as well as risks of insertional mutagenesis associated with integrated genes into induced pluripotent stem cells.
机译:精原干细胞(SSC)为精子发生提供了基础,并且是独特的组织特异性干细胞,因为它们能够将遗传信息传递给后代。在成功建立用于这些细胞的移植和长期培养的协议(称为种系干(GS)细胞)的协议后,使用小鼠SSC产生敲除小鼠变得可行。此外,SSC除了具有高度分化的生精潜力之外,还可以获得与胚胎干(ES)细胞相似的多能性。这些称为ES的多能GS(mGS)细胞样细胞能够以类似于ES细胞的方式产生基因敲除小鼠。 GS和mGS细胞在动物转基因中的使用,为使用ES细胞和体细胞核转移的基因靶向技术增加了新的领域,其应用受到限制。此外,出于再生医学的目的,mGS的使用将解决诸如与ES细胞相关的伦理学问题和免疫排斥以及与整合基因相关的诱变插入诱导多能干细胞等风险的问题。

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