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电穿孔导入转基因挽救了患有支持细胞缺陷的不育突变小鼠的精子发生。

Electroporated transgene-rescued spermatogenesis in infertile mutant mice with a sertoli cell defect.

作者信息

Yomogida Kentaro, Yagura Yo, Nishimune Yoshitake

机构信息

Department of Science for Laboratory Animal Experimentation, Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan.

出版信息

Biol Reprod. 2002 Sep;67(3):712-7. doi: 10.1095/biolreprod.101.001743.

Abstract

The molecular basis of most human male infertility arising from spermatogenesis disruption is poorly understood because of a lack of useful investigation systems. To study the roles of the supporting Sertoli cells in mammalian spermatogenesis, we improved an electroporation technique for seminiferous tubules in vivo. Because Sertoli cells barely proliferate in mature testis, linear transgenes are not incorporated into the genome and quickly degrade. However, circular expression vector is stably expressed in Sertoli cells for a long period. By electrotransformation of a complete cDNA, we rescued defective spermatogenesis in infertile Sl(17H)/Sl(17H) mutant mice with partial dysfunction of stem cell factor in Sertoli cells. Application of this gene transfer system will facilitate both the understanding of spermatogenesis and the development of new gene therapies for human male infertility.

摘要

由于缺乏有效的研究系统,大多数因精子发生破坏导致的人类男性不育的分子基础仍知之甚少。为了研究支持性睾丸支持细胞在哺乳动物精子发生中的作用,我们改进了一种体内曲细精管电穿孔技术。由于睾丸支持细胞在成熟睾丸中几乎不增殖,线性转基因不会整合到基因组中并迅速降解。然而,环状表达载体在睾丸支持细胞中能长期稳定表达。通过对完整cDNA进行电转化,我们挽救了不育的Sl(17H)/Sl(17H)突变小鼠的精子发生缺陷,这些小鼠的睾丸支持细胞中干细胞因子部分功能失调。这种基因转移系统的应用将有助于理解精子发生过程,并推动人类男性不育新基因疗法的发展。

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