表达hrGFP的新型猪胚胎干细胞系的建立与鉴定。

Jenn-Rong Yang, Yow-Ling Shiue, Chia-Hsin Liao, Shinn-Zong Lin, Lih-Ren Chen
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引用次数: 23

摘要

本研究的目的是建立能稳定表达报告基因的转基因猪胚胎干细胞系。通过电穿孔介导、病毒载体介导和脂质体介导三种途径转染pAAV-hrGFP控制质粒。虽然通过逆转录病毒介导和脂质体介导的转染方法获得了几个表达绿色荧光蛋白(GFP)的pES菌落,但没有获得稳定表达绿色荧光蛋白的pES细胞系。用2次150 V/cm直流脉冲电穿孔10 msec,共获得28个表达GFP的pES细胞菌落,建立了3个表达GFP的pES (pES/GFP(+))细胞系。这些pES/GFP(+)细胞系稳定地表达外源性GFP,并在体外持续增殖20个月超过90代。它们保持了36 + XX的正常核型和多能干细胞的典型特征,包括多能标记Oct-4、AP、SSEA-4、TRA-1-60和TRA-1-81的表达,悬浮培养下胚状体的形成。在适当的诱导下,它们能够在体外分别分化为神经细胞和心肌细胞谱系。据我们所知,目前还没有建立表达gfp的pES细胞系的报道。本研究建立的新型pES/GFP(+)细胞系可以作为非啮齿动物模型,由于其可追溯的能力,将有利于胚胎干细胞移植、细胞替代疗法和组织再生的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Establishment and characterization of novel porcine embryonic stem cell lines expressing hrGFP.

The purpose of this study was to establish transgenic porcine embryonic stem (pES) cell lines that can stably express report gene. Established pES cell line at passage 44 was transfected with pAAV-hrGFP Control Plasmid by electroporation-mediated, viral vector-mediated, and liposome-mediated strategies. Although there were several pES colonies expressing green fluorescent protein (GFP) obtained from the retrovirus-mediated and liposome-mediated transfection methods, no stable GFP-expressing pES cell line was then derived. A total of 28 GFP-expressing pES cell colonies were obtained following electroporation with two DC pulses of 150 V/cm for 10 msec and three GFP-expressing pES (pES/GFP(+)) cell lines were established. These pES/GFP(+) cell lines stably expressed exogenous GFP and continuously proliferated in vitro for more than 90 passages in 20 months. They maintained normal karyotype of 36 + XX and typical characteristics of pluripotent stem cells, including expression of pluripotent markers Oct-4, AP, SSEA-4, TRA-1-60, and TRA-1-81, formation of embryoid bodies under suspension culture. They were able to differentiate in vitro into neural and cardiomyocytic lineage, respectively, under suitable induction. To our knowledge, there has been no report of establishing GFP-expressing pES cell lines. These novel pES/GFP(+) cell lines established in this study might serve as a nonrodent model and would benefit to the studies involving ES cell transplantation, cell replacement therapy, and tissue regeneration due to their traceable capacity.

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