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通过磁激活细胞分选法筛选转基因鸡胚盘细胞

Selection of genetically modified chicken blastodermal cells by magnetic-activated cell sorting.

作者信息

Wei Q, Croy B A, Etches R J

机构信息

Department of Biomedical Sciences, University of Guelph, Ontario, Canada.

出版信息

Poult Sci. 2001 Dec;80(12):1671-8. doi: 10.1093/ps/80.12.1671.

Abstract

The use of chicken blastodermal cells (CBC) in the production of transgenic chickens requires incorporation of the desired stable genetic modification into CBC. With greater proportions of stably transfected blastodermal cells in the embryo inoculum, the frequency of intermediate chimeric birds is greater. Magnetic-activated cell sorting (MACS) was evaluated as a method for enrichment of transfected CBC. This approach requires surface expression of a molecule that can be recognized by an antibody. Chicken blastodermal cells from fertilized Barred Plymouth Rock eggs were coelectroporated with pmiwZ and pMACS Kk and were sorted magnetically by expression of the mouse H-2Kk molecule on the surface of successfully transfected cells. The effectiveness of sorting was assessed using X-gal staining to detect lacZ expression from the pmiwZ plasmid. After 48 h of culture, lacZ-positive cells appeared to be enriched 1.4-fold in the MACS selected population. Cells from this enriched pool contributed to extra-embryonic and intra-embryonic tissues of 72-h White Leghorn recipient embryos with a marginal increase in levels of intra-embryonic contribution. Our demonstration that transfected, cultured, and magnetically sorted CBC maintain their ability to contribute to ectodermal and mesodermal lineages of intra-embryonic tissues illustrates the potential value of this technique for introducing genetic modifications into birds.

摘要

在转基因鸡的生产中使用鸡胚盘细胞(CBC)需要将所需的稳定基因修饰整合到CBC中。胚胎接种物中稳定转染的胚盘细胞比例越高,中间嵌合体鸡的频率就越高。磁激活细胞分选(MACS)被评估为一种富集转染CBC的方法。这种方法需要一种能被抗体识别的分子在表面表达。将来自受精的 barred Plymouth Rock鸡蛋的鸡胚盘细胞与pmiwZ和pMACS Kk共电穿孔,并通过成功转染细胞表面的小鼠H-2Kk分子的表达进行磁性分选。使用X-gal染色检测pmiwZ质粒的lacZ表达来评估分选的有效性。培养48小时后,lacZ阳性细胞在MACS选择的群体中似乎富集了1.4倍。来自这个富集池的细胞对72小时龄的白来航受体胚胎的胚外和胚内组织有贡献,胚内贡献水平略有增加。我们证明转染、培养和磁性分选的CBC保持了它们对胚内组织的外胚层和中胚层谱系有贡献的能力,这说明了该技术在将基因修饰引入鸟类中的潜在价值。

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