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微针辊与柔性叉指式电穿孔阵列联合应用高效递送入皮核酸分子。

Efficient delivery of nucleic acid molecules into skin by combined use of microneedle roller and flexible interdigitated electroporation array.

机构信息

National Key Laboratory of Science and Technology on Micro/Nano Fabrication; Institute of Microelectronics; Institute of Molecular Medicine; Peking University, Beijing 100871, China.

Advanced Research Institute of Multidisciplinary Science, and School of Life Science, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Theranostics. 2018 Mar 22;8(9):2361-2376. doi: 10.7150/thno.23438. eCollection 2018.

Abstract

Delivery of nucleic acid molecules into skin remains a main obstacle for various types of gene therapy or vaccine applications. Here we propose a novel electroporation approach combined use of a microneedle roller and a flexible interdigitated electroporation array (FIEA) for efficient delivery of DNA and siRNA into mouse skin. Using micromachining technology, closely spaced gold electrodes were made on a pliable parylene substrate to form a patch-like electroporation array, which enabled close surface contact between the skin and electrodes. Pre-penetration of the skin with a microneedle roller resulted in the formation of microchannels in the skin, which played a role as liquid electrodes in the skin and provided a uniform and deep electric field in the tissue when pulse stimulation was applied by FIEA. Using this proposed method, gene (RFP) expression and siRNA transfection were successfully achieved in normal mice skin. Anti-SCD1 siRNA electroporated this method mediated significant gene silencing in the skin. Moreover, electroporation assisted by the microneedle roller showed significant advantages over treatment with FIEA alone. This allowed nucleic acid transportation at low voltage, with ideal safety outcomes. Hence, the proposed electroporation approach in this study constitutes a novel way for delivering siRNA and DNA, and even other nucleic acid molecules, to mouse skin , potentially supporting clinical application in the treatment of skin diseases or intradermal/subcutaneous vaccination.

摘要

将核酸分子递送到皮肤仍然是各种类型的基因治疗或疫苗应用的主要障碍。在这里,我们提出了一种新的电穿孔方法,将微针辊和柔性叉指式电穿孔阵列(FIEA)结合使用,以有效地将 DNA 和 siRNA 递送到小鼠皮肤中。使用微加工技术,在柔韧的聚对二甲苯基底上制作了紧密间隔的金电极,形成了类似补丁的电穿孔阵列,使皮肤和电极之间能够紧密接触。微针辊预先穿透皮肤会在皮肤中形成微通道,这些微通道在皮肤中充当液体电极,当 FIEA 施加脉冲刺激时,在组织中提供均匀且深的电场。使用这种提出的方法,正常小鼠皮肤中的基因(RFP)表达和 siRNA 转染成功实现。用这种方法电穿孔的抗 SCD1 siRNA 介导了皮肤中的显著基因沉默。此外,微针辊辅助的电穿孔在治疗中比单独使用 FIEA 具有明显优势。这允许在低电压下进行核酸运输,具有理想的安全性结果。因此,本研究中提出的电穿孔方法为将 siRNA 和 DNA 甚至其他核酸分子递送到小鼠皮肤提供了一种新方法,有可能支持治疗皮肤病或皮内/皮下疫苗接种的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b2c/5928895/975e69467de4/thnov08p2361g001.jpg

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