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核酸转移的物理方法:一般概念与应用

Physical methods of nucleic acid transfer: general concepts and applications.

作者信息

Villemejane Julien, Mir Lluis M

机构信息

CNRS, UMR 8121, Institut Gustave Roussy PR2, 39 rue Camille Desmoulins, Villejuif Cedex, France.

出版信息

Br J Pharmacol. 2009 May;157(2):207-19. doi: 10.1111/j.1476-5381.2009.00032.x. Epub 2009 Jan 21.

Abstract

Physical methods of gene (and/or drug) transfer need to combine two effects to deliver the therapeutic material into cells. The physical methods must induce reversible alterations in the plasma membrane to allow the direct passage of the molecules of interest into the cell cytosol. They must also bring the nucleic acids in contact with the permeabilized plasma membrane or facilitate access to the inside of the cell. These two effects can be achieved in one or more steps, depending upon the methods employed. In this review, we describe and compare several physical methods: biolistics, jet injection, hydrodynamic injection, ultrasound, magnetic field and electric pulse mediated gene transfer. We describe the physical mechanisms underlying these approaches and discuss the advantages and limitations of each approach as well as its potential application in research or in preclinical and clinical trials. We also provide conclusions, comparisons, and projections for future developments. While some of these methods are already in use in man, some are still under development or are used only within clinical trials for gene transfer. The possibilities offered by these methods are, however, not restricted to the transfer of genes and the complementary uses of these technologies are also discussed. As these methods of gene transfer may bypass some of the side effects linked to viral or biochemical approaches, they may find their place in specific clinical applications in the future.

摘要

基因(和/或药物)转移的物理方法需要结合两种效应,才能将治疗物质递送至细胞内。物理方法必须在质膜上诱导可逆性改变,以使感兴趣的分子直接进入细胞质。它们还必须使核酸与通透化的质膜接触,或促进进入细胞内部。根据所采用的方法,这两种效应可以通过一个或多个步骤实现。在本综述中,我们描述并比较了几种物理方法:生物弹道学方法、喷射注射、流体动力学注射、超声、磁场和电脉冲介导的基因转移。我们描述了这些方法背后的物理机制,并讨论了每种方法的优缺点及其在研究或临床前及临床试验中的潜在应用。我们还提供了结论、比较结果以及对未来发展的预测。虽然其中一些方法已在人体中使用,但有些仍在开发中,或仅用于基因转移的临床试验。然而,这些方法的应用并不局限于基因转移,我们还将讨论这些技术的互补用途。由于这些基因转移方法可能会绕过一些与病毒或生化方法相关的副作用,它们未来可能会在特定的临床应用中占有一席之地。

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