Louvain Drug Research Institute, Unité de pharmacie galénique, Université Catholique de Louvain, Avenue E. Mounier 73/20, 1200, Brussels, Belgium.
J Membr Biol. 2010 Jul;236(1):117-25. doi: 10.1007/s00232-010-9283-0. Epub 2010 Jul 22.
The association of microneedles with electric pulses causing electroporation could result in an efficient and less painful delivery of drugs and DNA into the skin. Hollow conductive microneedles were used for (1) needle-free intradermal injection and (2) electric pulse application in order to achieve electric field in the superficial layers of the skin sufficient for electroporation. Microneedle array was used in combination with a vibratory inserter to disrupt the stratum corneum, thus piercing the skin. Effective injection of proteins into the skin was achieved, resulting in an immune response directed to the model antigen ovalbumin. However, when used both as microneedles to inject and as electrodes to apply the electric pulses, the setup showed several limitations for DNA electrotransfer. This could be due to the distribution of the electric field in the skin as shown by numerical calculations and/or the low dose of DNA injected. Further investigation of these parameters is needed in order to optimize minimally invasive DNA electrotransfer in the skin.
微针与电脉冲联合应用引起电穿孔,可高效、低痛地将药物和 DNA 递送至皮肤。空心导电微针用于(1)无针皮内注射和(2)电脉冲应用,以实现在皮肤浅层产生足够的用于电穿孔的电场。微针阵列与振动式植入器联合使用,破坏角质层,从而刺穿皮肤。已成功将蛋白质有效递送至皮肤,引发针对模型抗原卵清蛋白的免疫反应。然而,当用作注射微针和施加电脉冲的电极时,该设置显示出用于 DNA 电转的几个局限性。这可能是由于皮肤中的电场分布所致,如数值计算所示,和/或注入的 DNA 剂量低。需要进一步研究这些参数,以优化皮肤微创性 DNA 电转移。