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用于追踪移植神经干/祖细胞的转基因大鼠中绿色荧光蛋白表达的分析

Analysis of green fluorescent protein expression in transgenic rats for tracking transplanted neural stem/progenitor cells.

作者信息

Mothe Andrea J, Kulbatski Iris, van Bendegem Rita L, Lee Linda, Kobayashi Eiji, Keating Armand, Tator Charles H

机构信息

Division of Cellular and Molecular Biology, Toronto Western Research Institute, Ontario, Canada

出版信息

J Histochem Cytochem. 2005 Oct;53(10):1215-26. doi: 10.1369/jhc.5A6639.2005. Epub 2005 Jun 27.

Abstract

Green fluorescent protein (GFP) expression was evaluated in tissues of different transgenic rodents--Sprague-Dawley (SD) rat strain [SD-Tg(GFP)Bal], W rat strain [Wistar-TgN(CAG-GFP)184ys], and M mouse strain [Tg(GFPU)5Nagy/J]--by direct fluorescence of native GFP expression and by immunohistochemistry. The constitutively expressing GFP transgenic strains showed tissue-specific differences in GFP expression, and GFP immunohistochemistry amplified the fluorescent signal. The fluorescence of stem/progenitor cells cultured as neurospheres from the ependymal region of the adult spinal cord from the GFP SD and W rat strains was assessed in vitro. After transplantation of the cells into wild-type spinal cord, the ability to track the grafted cells was evaluated in vivo. Cultured stem/progenitor cells from the SD strain required GFP immunostaining to be visualized. Likewise, after transplantation of SD cells into the spinal cord, immunohistochemical amplification of the GFP signal was required for detection. In contrast, GFP expression of stem/progenitor cells generated from the W strain was readily detected by direct fluorescence both in vitro and in vivo without the need for immunohistochemical amplification. The cultured stem/progenitor cells transplanted into the spinal cord survived for at least 49 days after transplantation, and continued to express GFP, demonstrating stable expression of the GFP transgene in vivo.

摘要

通过天然绿色荧光蛋白(GFP)表达的直接荧光和免疫组织化学方法,评估了不同转基因啮齿动物组织中的GFP表达,这些动物包括斯普拉格-道利(SD)大鼠品系[SD-Tg(GFP)Bal]、W大鼠品系[Wistar-TgN(CAG-GFP)184ys]和M小鼠品系[Tg(GFPU)5Nagy/J]。组成型表达GFP的转基因品系在GFP表达上表现出组织特异性差异,并且GFP免疫组织化学增强了荧光信号。对来自GFP SD和W大鼠品系成年脊髓室管膜区域培养成神经球的干/祖细胞的荧光进行了体外评估。将这些细胞移植到野生型脊髓后,在体内评估追踪移植细胞的能力。来自SD品系的培养干/祖细胞需要进行GFP免疫染色才能可视化。同样,将SD细胞移植到脊髓后,检测需要对GFP信号进行免疫组织化学增强。相比之下,来自W品系的干/祖细胞的GFP表达在体外和体内均可通过直接荧光轻松检测到,无需免疫组织化学增强。移植到脊髓中的培养干/祖细胞在移植后至少存活49天,并持续表达GFP,表明GFP转基因在体内稳定表达。

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