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利用中空微针装置进行人体皮肤的流体力学基因递释。

Hydrodynamic gene delivery in human skin using a hollow microneedle device.

机构信息

Cardiff School of Pharmacy and Pharmaceutical Sciences, Cardiff University, Cathays Park, Cardiff CF10 3NB, UK.

Tyndall National Institute, Lee Maltings, University College Cork, Cork, Ireland.

出版信息

J Control Release. 2017 Nov 10;265:120-131. doi: 10.1016/j.jconrel.2017.02.028. Epub 2017 Feb 28.

Abstract

Microneedle devices have been proposed as a minimally invasive delivery system for the intradermal administration of nucleic acids, both plasmid DNA (pDNA) and siRNA, to treat localised disease or provide vaccination. Different microneedle types and application methods have been investigated in the laboratory, but limited and irreproducible levels of gene expression have proven to be significant challenges to pre-clinical to clinical progression. This study is the first to explore the potential of a hollow microneedle device for the delivery and subsequent expression of pDNA in human skin. The regulatory approved MicronJet600® (MicronJet hereafter) device was used to deliver reporter plasmids (pCMVβ and pEGFP-N1) into viable excised human skin. Exogenous gene expression was subsequently detected at multiple locations that were distant from the injection site but within the confines of the bleb created by the intradermal bolus. The observed levels of gene expression in the tissue are at least comparable to that achieved by the most invasive microneedle application methods e.g. lateral application of a microneedle. Gene expression was predominantly located in the epidermis, although also evident in the papillary dermis. Optical coherence tomography permitted real time visualisation of the sub-surface skin architecture and, unlike a conventional intradermal injection, MicronJet administration of a 50μL bolus appears to create multiple superficial microdisruptions in the papillary dermis and epidermis. These were co-localised with expression of the pCMVβ reporter plasmid. We have therefore shown, for the first time, that a hollow microneedle device can facilitate efficient and reproducible gene expression of exogenous naked pDNA in human skin using volumes that are considered to be standard for intradermal administration, and postulate a hydrodynamic effect as the mechanism of gene delivery.

摘要

微针装置已被提议作为一种微创给药系统,用于将核酸(质粒 DNA(pDNA)和 siRNA)皮内给药,以治疗局部疾病或提供疫苗接种。不同类型的微针和应用方法已在实验室中进行了研究,但临床前到临床进展的限制和不可重现的基因表达水平已被证明是重大挑战。本研究首次探索了空心微针装置在人皮肤中递送和随后表达 pDNA 的潜力。使用监管批准的 MicronJet600®(简称 MicronJet)装置将报告质粒(pCMVβ和 pEGFP-N1)递送至活的离体人皮肤。随后在远离注射部位但在皮内弹丸形成的疱内范围内的多个位置检测到外源性基因表达。组织中观察到的基因表达水平至少与最具侵袭性的微针应用方法相当,例如微针的侧向应用。基因表达主要位于表皮中,但在乳头真皮中也很明显。光学相干断层扫描允许实时可视化皮下皮肤结构,与传统的皮内注射不同,MicronJet 给药 50μL 弹丸似乎在乳头真皮和表皮中产生多个浅表微破坏。这些与 pCMVβ报告质粒的表达共定位。因此,我们首次表明,空心微针装置可以使用被认为是皮内给药标准的体积,促进外源裸露 pDNA 在人皮肤中的高效和可重复的基因表达,并假设流体力效应是基因传递的机制。

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