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用含有人内皮素-1 启动子的质粒 DNA 进行体外靶向基因电转移到内皮细胞。

In vitro targeted gene electrotransfer to endothelial cells with plasmid DNA containing human endothelin-1 promoter.

机构信息

Faculty of Health Sciences, University of Primorska, Polje 42, 6310, Isola, Slovenia.

出版信息

J Membr Biol. 2013 Oct;246(10):783-91. doi: 10.1007/s00232-013-9548-5. Epub 2013 May 8.

Abstract

Development of recombinant DNA technologies has allowed us to create new delivery systems that target specific cell types and that can be used in gene therapy. One of these targets is vascular endothelium because of its important role in tumor angiogenesis. For tumor endothelium-specific targeting, we prepared plasmid DNA encoding green fluorescent protein under the control of human endothelin-1 promoter (pENDO-EGFP), which is specific for endothelial cells. First we determined gene electrotransfer parameters for improved transfection of endothelial cells evaluating different osmolarity of electroporation buffer, voltages of applied electric pulses, and addition of fetal bovine serum immediately after electroporation to the cells for improved transfection and survival. Transfection efficacy of pENDO-EGFP in different endothelial and nonendothelial cell lines was determined next. Gene electrotransfer efficacy was evaluated using three different methods: fluorescence microscopy, fluorescence microplate reader, and flow cytometry. Our results showed that transfection efficacy was higher when cells were prepared in hypoosmolar compared to isoosmolar electroporation buffer. Furthermore, immediate addition of fetal bovine serum to the cells after pulsing also improved gene electrotransfer into target cells. We proved expression of EGFP under the control of human endothelin-1 promoter in endothelial cells, which was also significantly higher compared to nonendothelial cells. Taken together, we successfully constructed pENDO-EGFP, which was specifically expressed in endothelial cells using improved gene electrotransfer parameters.

摘要

重组 DNA 技术的发展使我们能够创建新的靶向特定细胞类型的传递系统,可用于基因治疗。这些靶点之一是血管内皮细胞,因为它在肿瘤血管生成中具有重要作用。为了进行肿瘤内皮细胞特异性靶向,我们制备了编码绿色荧光蛋白的质粒 DNA,该蛋白受人内皮素-1 启动子(pENDO-EGFP)的控制,该启动子对内皮细胞具有特异性。首先,我们确定了基因电转移参数,以改善对内皮细胞的转染,评估不同渗透压的电穿孔缓冲液、施加的电脉冲电压以及电穿孔后立即向细胞中添加胎牛血清,以提高转染和细胞存活率。接下来,我们确定了 pENDO-EGFP 在不同内皮细胞和非内皮细胞系中的转染效率。使用三种不同的方法评估了基因电转移效率:荧光显微镜、荧光微孔板读数器和流式细胞术。我们的结果表明,与等渗电穿孔缓冲液相比,在低渗条件下制备细胞时转染效率更高。此外,脉冲后立即向细胞中添加胎牛血清也可以提高基因向靶细胞的电转移效率。我们证明了在人内皮素-1 启动子的控制下在内皮细胞中表达 EGFP,与非内皮细胞相比,其表达也明显更高。总之,我们成功构建了 pENDO-EGFP,使用改进的基因电转移参数,该基因可特异性表达在内皮细胞中。

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