Comparative Efficiency for in vitro Transfection of Goat Undifferentiated Spermatogonia Using Lipofectamine Reagents and Electroporation

IF 1.7 Q4 CELL BIOLOGY
W. Nakami, J. Nguhiu-Mwangi, A. N. Kipyegon, M. Ogugo, C. Muteti, Stephen Kemp
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引用次数: 1

Abstract

Introduction Spermatogonial stem cells (SSC), also referred to as undifferentiated spermatogonia, are the germline stem cells responsible for continuous spermatogenesis throughout a male’s life. They are, therefore, an ideal target for gene editing. Previously, SSC from animal testis have been isolated and transplanted to homologous recipients resulting in the successful reestablishment of donor-derived spermatogenesis. Methods Enhanced green fluorescent protein (eGFP) gene transfection into goat SSC was evaluated using liposomal carriers and electroporation. The cells were isolated from the prepubertal Galla goats testis cultured in serum-free defined media and transfected with the eGFP gene. Green fluorescing of SSC colonies indicated transfection. Results The use of lipofectamineTM stem reagent and lipofectamineTM 2000 carriers resulted in more SSC colonies expressing the eGFP gene (25.25% and 22.25%, respectively). Electroporation resulted in 15% ± 0.54 eGFP expressing SSC colonies. Furthermore, cell viability was higher in lipofectamine transfection (55% ± 0.21) as compared to electroporation (38% ± 0.14). Conclusion These results indicated that lipofectamine was more effective in eGFP gene transfer into SSC. The successful transient transfection points to a possibility of transfecting transgenes into male germ cells in genetic engineering programs.
Lipofectamine试剂与电穿孔法转染山羊未分化精原细胞的比较
引言精原干细胞(SSC),也称为未分化精原细胞,是在男性一生中负责持续精子发生的种系干细胞。因此,它们是基因编辑的理想靶点。以前,已经从动物睾丸中分离出SSC并将其移植到同源受体,从而成功重建了供体来源的精子发生。方法采用脂质体载体和电穿孔技术对增强型绿色荧光蛋白(eGFP)基因转染山羊SSC进行评价。从在无血清培养基中培养的青春期前Galla山羊睾丸中分离细胞,并用eGFP基因转染。SSC集落的绿色荧光指示转染。结果使用lipofectamineTM干细胞试剂和lipoffectamineTM 2000载体可获得更多表达eGFP基因的SSC集落(分别为25.25%和22.25%)。电穿孔产生15%±0.54表达eGFP的SSC集落。此外,与电穿孔(38%±0.14)相比,脂质体胺转染的细胞活力(55%±0.21)更高。结论脂质体胺对eGFP基因转染SSC更有效。这一成功的瞬时转染为基因工程项目中将转基因转染到雄性生殖细胞中指明了可能性。
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来源期刊
CiteScore
6.50
自引率
0.00%
发文量
10
审稿时长
16 weeks
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