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利用微针电极阵列进行电穿孔实现细胞内蛋白质输送和基因转染。

Intracellular protein delivery and gene transfection by electroporation using a microneedle electrode array.

机构信息

School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Small. 2012 Apr 10;8(7):1081-91. doi: 10.1002/smll.201101747. Epub 2012 Feb 13.

Abstract

The impact of many biopharmaceuticals, including protein- and gene-based therapies, has been limited by the need for better methods of delivery into cells within tissues. Here, intracellular delivery of molecules and transfection with plasmid DNA by electroporation is presented using a novel microneedle electrode array designed for the targeted treatment of skin and other tissue surfaces. The microneedle array is molded out of polylactic acid. Electrodes and circuitry required for electroporation are applied to the microneedle array surface by a new metal-transfer micromolding method. The microneedle array maintains mechanical integrity after insertion into pig cadaver skin and is able to electroporate human prostate cancer cells in vitro. Quantitative measurements show that increasing electroporation pulse voltage increases uptake efficiency of calcein and bovine serum albumin, whereas increasing pulse length has lesser effects over the range studied. Uptake of molecules by up to 50% of cells and transfection of 12% of cells with a gene for green fluorescent protein is demonstrated at high cell viability. It is concluded that the microneedle electrode array is able to electroporate cells, resulting in intracellular uptake of molecules, and has potential applications to improve intracellular delivery of proteins, DNA, and other biopharmaceuticals.

摘要

许多生物制药的效果受到限制,包括基于蛋白质和基因的疗法,这是因为需要更好的方法将分子递送到组织内的细胞中。在这里,使用一种新的微针电极阵列介绍了通过电穿孔将分子和质粒 DNA 转染到细胞内的方法,该微针电极阵列设计用于靶向皮肤和其他组织表面的治疗。微针阵列由聚乳酸模制而成。通过一种新的金属转移微成型方法将用于电穿孔的电极和电路施加到微针阵列表面。微针阵列在插入猪尸体皮肤后保持机械完整性,并且能够在体外电穿孔人前列腺癌细胞。定量测量表明,增加电穿孔脉冲电压会增加钙黄绿素和牛血清白蛋白的摄取效率,而在研究范围内,增加脉冲长度的效果较小。在高细胞活力下,证明了高达 50%的细胞摄取分子和 12%的细胞转染绿色荧光蛋白基因。结论是,微针电极阵列能够电穿孔细胞,导致细胞内分子摄取,并有可能改善蛋白质、DNA 和其他生物制药的细胞内传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eec6/3516926/905f51798a27/nihms414141f1.jpg

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