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用于在小鼠中实现肾压介导转染的植入式气动驱动微系统。

Implantable pneumatically actuated microsystem for renal pressure-mediated transfection in mice.

机构信息

Institute for Innovative NanoBio Drug Discovery and Development, Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto, Japan.

出版信息

J Control Release. 2012 Apr 10;159(1):85-91. doi: 10.1016/j.jconrel.2011.12.033. Epub 2011 Dec 30.

Abstract

In vivo transfection is an important technique used in biological research and drug therapy development. Previously, we developed a renal pressure-mediated transfection method performed by pressing a kidney after an intravenous injection of naked nucleic acids. Although this is a useful method because of its safety and wide range of applications, an innovative approach for performing this method without repeatedly cutting open the abdomen is required. In this study, we developed an implantable microsystem fabricated by Micro-Electro-Mechanical Systems (MEMS) technologies for renal pressure-mediated transfection. The system consists of a polydimethylsiloxane pneumatic balloon actuator (PBA) used as an actuator to press the target kidney. The PBA of the implanted microsystem can be actuated without opening the abdomen by applying air pressure from outside the body to the pressure-supplying port via a needle. We successfully performed renal pressure-mediated transfection using the newly developed system when the implanted system was activated at 60kPa for 10s. This is the first report of an implantable MEMS-based microsystem that demonstrates in vivo transfection to a kidney using naked plasmid DNA.

摘要

体内转染是生物研究和药物治疗开发中常用的重要技术。此前,我们开发了一种肾脏压力介导的转染方法,即在静脉注射裸核酸后按压肾脏。尽管由于其安全性和广泛的应用范围,这种方法很有用,但需要一种无需反复切开腹部即可进行此方法的创新方法。在这项研究中,我们开发了一种基于微机电系统 (MEMS) 技术的可植入微系统,用于肾脏压力介导的转染。该系统由聚二甲基硅氧烷气动气球致动器 (PBA) 组成,用作按压目标肾脏的致动器。通过将压力从外部施加到压力供应端口通过针,可对植入式微系统的 PBA 进行无需打开腹部的致动。当植入系统以 60kPa 激活 10s 时,我们成功地使用新开发的系统进行了肾脏压力介导的转染。这是第一个使用裸质粒 DNA 将基于可植入 MEMS 的微系统体内转染到肾脏的报告。

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