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一种灵活的微针阵列作为低压电穿孔电极,用于体内 DNA 和 siRNA 的递释。

A flexible microneedle array as low-voltage electroporation electrodes for in vivo DNA and siRNA delivery.

机构信息

National Center for Nanoscience and Technology, Beijing 100190, China.

出版信息

Lab Chip. 2014 Oct 21;14(20):4093-102. doi: 10.1039/c4lc00800f.

Abstract

In vivo electroporation is an appealing method to deliver nucleic acid into living tissues, but the clinical application of such a method was limited due to severe tissue damage and poor coverage of the tissue surface. Here we present the validation of a novel flexible microneedle array electrode (MNAE) chip, in which the microneedle array and the flexible substrate are integrated together to simultaneously facilitate low-voltage electroporation and accomplish good coverage of the tissue surface. The efficient delivery of both DNA and siRNA was demonstrated on mice. Upon penetrating the high-resistance stratum corneum, the electroporation voltage was reduced to about 35 V, which was generally recognized safe for humans. Also, a pathological analysis of the microneedle-electroporated tissues was carried out to thoroughly assess the skin damage, which is an important consideration in pre-clinical studies of electroporation devices. This MNAE constitutes a novel way of in vivo delivery of siRNA and DNA to certain tissues or organs with satisfactory efficiency and good adaptation to the tissue surface profile as well as minimum tissue damage, thus avoiding the disadvantages of existing electroporation methods.

摘要

在体电穿孔是将核酸递送到活组织中的一种有吸引力的方法,但由于严重的组织损伤和组织表面覆盖不良,该方法的临床应用受到限制。在这里,我们验证了一种新型的柔性微针阵列电极(MNAE)芯片,该芯片将微针阵列和柔性基底集成在一起,以同时促进低电压电穿孔并实现组织表面的良好覆盖。该方法在小鼠上验证了 DNA 和 siRNA 的高效传递。在穿透高电阻角质层后,电穿孔电压降低到约 35 V,这通常被认为对人体是安全的。此外,还对微针电穿孔组织进行了病理分析,以彻底评估皮肤损伤,这是电穿孔装置临床前研究中的一个重要考虑因素。这种 MNAE 构成了一种将 siRNA 和 DNA 递送到某些组织或器官的新方法,具有令人满意的效率和良好的组织表面适应性以及最小的组织损伤,从而避免了现有电穿孔方法的缺点。

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