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用于通过电穿孔进行体内DNA递送的施药器和电极设计。

Applicator and electrode design for in vivo DNA delivery by electroporation.

作者信息

Rabussay Dietmar

机构信息

Inovio Biomedical Corp., San Diego, CA, USA.

出版信息

Methods Mol Biol. 2008;423:35-59. doi: 10.1007/978-1-59745-194-9_3.

Abstract

As in vivo electroporation advances from the preclinical phase to clinical studies and eventually to routine medical practice, the design of electroporation devices becomes increasingly important. Achieving safety and efficacy levels that meet regulatory requirements, as well as user and patient friendliness, are major design considerations. In addition, the devices will have to be economical to manufacture. This chapter will focus on the design of applicators and electrodes, the pieces of hardware in direct contact with the user and the patient, and thus key elements responsible for the safety and efficacy of the procedure. The two major foreseeable applications of the technology in the DNA field are for gene therapy and DNA vaccination. Design requirements differ considerably for these applications and for the diseases to be treated or prevented. In addition to the trend of device differentiation, there is also a trend to build devices capable of performing both the step of delivering the DNA to the target tissue and the subsequent step of electroporation. This chapter presents the electrical and biological principles underlying applicator and electrode design, gives an overview of existing devices, and discusses their advantages and disadvantages. The chapter also outlines major design considerations, including regulatory pathways, and points out potential future developments.

摘要

随着体内电穿孔技术从临床前阶段发展到临床研究,并最终进入常规医疗实践,电穿孔设备的设计变得越来越重要。达到符合监管要求的安全和疗效水平,以及用户和患者友好性,是主要的设计考量因素。此外,这些设备必须在制造上经济实惠。本章将重点关注施加器和电极的设计,它们是与用户和患者直接接触的硬件部件,因此是决定该操作安全性和有效性的关键要素。该技术在DNA领域两个主要的可预见应用是基因治疗和DNA疫苗接种。这些应用以及要治疗或预防的疾病的设计要求差异很大。除了设备差异化的趋势外,还有一种趋势是制造能够同时执行将DNA递送至靶组织步骤和后续电穿孔步骤的设备。本章介绍了施加器和电极设计背后的电学和生物学原理,概述了现有设备,并讨论了它们的优缺点。本章还概述了主要的设计考量因素,包括监管途径,并指出了潜在的未来发展方向。

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