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Mammalian testis: A target of in vivo electroporation

机译:哺乳动物睾丸:体内电穿孔的目标

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摘要

Mammalian spermatogenesis consists of three biologically significant processes: stem cell self-renewal and differentiation, meiosis, and haploid cell morphogenesis. Understanding the molecular mechanisms behind these processes might provide clues to the puzzle of species preservation and evolution, and to treatments for male infertility. However, few useful in vitro systems exist to investigate these processes at present. To elucidate these mechanisms, in vivo electroporation of the testis might be a convenient option. Since DNA solution can be injected into the seminiferous tubule via the rete testis, similar to germ cell transplantation, it is easy to transfect expression vectors into various differentiated germ cells and supporting Sertoli cells with adequate electric shock. Unfortunately, it is difficult to create transgenic animals using this method because of its low efficiency. However, gain- and loss-of-function assays, promoter assays, and tagged-protein behavior assays can be conducted with this technique, as in in vitro culture systems.
机译:哺乳动物的精子发生包括三个生物学上重要的过程:干细胞的自我更新和分化,减数分裂和单倍体细胞形态发生。了解这些过程背后的分子机制可能为物种保存和进化的难题以及男性不育症的治疗提供线索。但是,目前很少有有用的体外系统来研究这些过程。为了阐明这些机制,体内电穿孔睾丸可能是一种方便的选择。由于可以通过网状睾丸将DNA溶液注射到生精小管中,因此类似于生殖细胞移植,因此很容易将表达载体转染到各种分化的生殖细胞中并以足够的电击支持Sertoli细胞。不幸的是,由于这种方法效率低,很难用它来产生转基因动物。但是,可以使用此技术进行功能获得和丧失功能测定,启动子测定和标记蛋白行为测定,就像在体外培养系统中一样。

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