Department of Research and Development, Inovio Pharmaceuticals, Blue Bell, Pennsylvania, USA.
Mol Ther Nucleic Acids. 2012 Feb 14;1(2):e11. doi: 10.1038/mtna.2012.1.
Electroporation (EP) of mammalian tissue is a technique that has been used successfully in the clinic for the delivery of genetic-based vaccines in the form of DNA plasmids. There is great interest in platforms which efficiently deliver RNA molecules such as messenger RNA and small interfering RNA (siRNA) to mammalian tissue. However, the in vivo delivery of RNA enhanced by EP has not been extensively characterized. This paper details the optimization of electrical parameters for a novel low-voltage EP method to deliver oligonucleotides (both DNA and RNA) to dermal tissue in vivo. Initially, the electrical parameters were optimized for dermal delivery of plasmid DNA encoding green fluorescent protein (GFP) using this novel surface dermal EP device. While all investigated parameters resulted in visible transfection, voltage parameters in the 10 V range elicited the most robust signal. The parameters optimized for DNA, were then assessed for translation of successful electrotransfer of siRNA into dermal tissue. Robust tagged-siRNA transfection in skin was detected. We then assessed whether these parameters translated to successful transfer of siRNA resulting in gene knockdown in vivo. Using a reporter gene construct encoding GFP and tagged siRNA targeting the GFP message, we show simultaneous transfection of the siRNA to the skin via EP and the concomitant knockdown of the reporter gene signal. The siRNA delivery was accomplished with no evidence of injection site inflammation or local tissue damage. The minimally invasive low-voltage EP method is thus capable of efficiently delivering both DNA and RNA molecules to dermal tissue in a tolerable manner.
电穿孔(EP)是一种已成功应用于临床的技术,可将 DNA 质粒形式的基因疫苗递送至哺乳动物组织。人们对能够高效递送至哺乳动物组织的 RNA 分子(如信使 RNA 和小干扰 RNA(siRNA))的平台非常感兴趣。然而,EP 增强的 RNA 体内递送尚未得到广泛研究。本文详细介绍了一种新型低电压 EP 方法的电参数优化,用于将寡核苷酸(DNA 和 RNA)递送至体内皮肤组织。最初,使用新型表皮 EP 装置优化了表皮 DNA 质粒(编码绿色荧光蛋白(GFP))的电穿孔参数。虽然所有研究的参数都导致可见的转染,但 10V 范围内的电压参数产生了最强烈的信号。然后评估了针对 DNA 的优化参数是否能成功地将 siRNA 电转移到皮肤组织中。在皮肤中检测到稳健的标记-siRNA 转染。然后,我们评估了这些参数是否可以转化为成功的 siRNA 转移,从而导致体内基因敲低。使用编码 GFP 的报告基因构建体和针对 GFP 消息的标记 siRNA,我们通过 EP 同时转染 siRNA 到皮肤,并同时降低报告基因信号。siRNA 递送至皮肤没有注射部位炎症或局部组织损伤的证据。因此,这种微创低电压 EP 方法能够以可耐受的方式将 DNA 和 RNA 分子高效递送至皮肤组织。