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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Efficient transfection of DNA into primarily cultured rat sertoli cells by electroporation
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Efficient transfection of DNA into primarily cultured rat sertoli cells by electroporation

机译:通过电穿孔将DNA高效转染到原代培养的大鼠睾丸干细胞中

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摘要

The expression of exogenous DNA in Sertoli cells is essential for studying its functional genomics, pathway analysis, and medical applications. Electroporation is a valuable tool for nucleic acid delivery, even in primarily cultured cells, which are considered difficult to transfect. In this study, we developed an optimized protocol for electroporation-based transfection of Sertoli cells and compared its efficiency with conventional lipofection. Sertoli cells were transfected with pCMV-GFP plasmid by square-wave electroporation under different conditions. After transfection of plasmid into Sertoli cells, enhanced green fluorescent protein (EGFP) expression could be easily detected by fluorescent microscopy, and cell survival was evaluated by dye exclusion assay using Trypan blue. In terms of both cell survival and the percentage expressing EGFP, 250 V was determined to produce the greatest number of transiently transfected cells. Keeping the voltage constant (250 V), relatively high cell survival (76.5% ± 3.4%) and transfection efficiency (30.6% ± 5.6%) were observed with a pulse length of 20 lm. The number of pulses significantly affected cell survival and EGFP expression (P < 0.001). Cell survival clearly decreased following one to three pulses, from 83.9% ± 6.1% to 3.2% 6 1.1%, with EGFP expression increasing from 41.8% ± 9.4% to 66.7% ± 5.2%. The yield of positive cells increased with increasing concentration of plasmid DNA (range, 10-50 lg/ml), from 14.0% ± 2.8% to 35.0% ± 6.3%, but cell viability steadily decreased following 20 lg/ml plasmid DNA, from 73.1% ± 4.9% to 57.0% ± 6.6%. Compared with two popular cationic lipid transfection methods, the transfection efficiency of electroporation (21.5% ± 5.7%) was significantly higher than those of Lipofectamine 2000 (2.9% ± 1.0%) and Effectene (1.9% ± 0.8%) in this experiment (P < 0.001). We describe the process of optimizing electroporation conditions, and the successful electroporation of plasmid DNA into primarily cultured Sertoli cells. Our results indicate that the method of electroporation is more suitable than other approaches for the transfection of Sertoli cells.
机译:Sertoli细胞中外源DNA的表达对于研究其功能基因组学,途径分析和医学应用至关重要。电穿孔是用于核酸递送的有价值的工具,甚至在认为难以转染的初次培养的细胞中也是如此。在这项研究中,我们开发了一种优化的协议,用于基于电穿孔的Sertoli细胞转染,并将其效率与常规脂质转染进行了比较。在不同条件下通过方波电穿孔将pCMV-GFP质粒转染支持细胞。将质粒转染至Sertoli细胞后,可以通过荧光显微镜轻松检测到增强的绿色荧光蛋白(EGFP)表达,并使用台盼蓝通过染料排阻测定法评估细胞存活率。就细胞存活率和表达EGFP的百分比而言,测定250V可产生最大数目的瞬时转染细胞。保持电压恒定(250 V),以20 lm的脉冲长度观察到较高的细胞存活率(76.5%±3.4%)和转染效率(30.6%±5.6%)。脉冲数显着影响细胞存活和EGFP表达(P <0.001)。一到三个脉冲后,细胞存活率明显降低,从83.9%±6.1%降至3.2%6 1.1%,EGFP表达从41.8%±9.4%增加至66.7%±5.2%。阳性细胞的产量随质粒DNA浓度的增加而增加(范围为10-50 lg / ml),从14.0%±2.8%增至35.0%±6.3%,但随着细胞的存活率从20 lg / ml稳步下降, 73.1%±4.9%至57.0%±6.6%。与两种流行的阳离子脂质转染方法相比,本实验中电穿孔的转染效率(21.5%±5.7%)显着高于Lipofectamine 2000(2.9%±1.0%)和Effectene(1.9%±0.8%)(P <0.001)。我们描述了优化电穿孔条件的过程,以及成功地将质粒DNA成功电穿孔到主要培养的Sertoli细胞中。我们的结果表明,电穿孔方法比其他方法更适合用于Sertoli细胞的转染。

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