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基于肽的基因递送。

Peptide-based gene delivery.

作者信息

Mahat R I, Monera O D, Smith L C, Rolland A

机构信息

Copernicus Therapeutics Inc, Cleveland, Ohio 44106-3052, USA.

出版信息

Curr Opin Mol Ther. 1999 Apr;1(2):226-43.

Abstract

To achieve effective plasmid-based gene therapy, the control of cellular access and uptake, intracellular trafficking and nuclear retention of plasmids must be achieved. Inefficient endosomal release, cytoplasmic transport and nuclear entry of plasmids are amongst some of the key limiting factors in the use of plasmids for effective gene therapy. A number of non-viral gene delivery systems have been designed to overcome these limiting factors. The most common approach to protect and control plasmid distribution is to complex plasmids with cationic lipids or polymers through electrostatic interactions. Endosomal release of plasmids can be achieved, for instance, by using pH-sensitive lipids, inactivated viral particles, endosomolytic peptides and polymers. Among the least explored gene delivery systems are those that consist mainly of synthetic, short peptides. Peptides can be incorporated into multicomponent gene delivery complexes for specific purposes, such as for DNA condensation, cell-specific targeting, endosomolysis or nuclear transport. The aims of this review are to: (i) explore the conceptual and experimental aspects of peptide-DNA interactions; (ii) critically assess the possible use of peptides for efficient gene transfer; and (iii) present an overview on the use of peptides to enhance the effectiveness of other gene delivery systems. On balance, peptide-based gene delivery systems appear to have a significant potential as commercially viable gene delivery products.

摘要

为实现有效的基于质粒的基因治疗,必须实现对质粒的细胞内进入与摄取、细胞内运输以及核内保留的控制。质粒的内体释放效率低下、细胞质运输以及核进入是质粒用于有效基因治疗的一些关键限制因素。已经设计了许多非病毒基因递送系统来克服这些限制因素。保护和控制质粒分布的最常见方法是通过静电相互作用使质粒与阳离子脂质或聚合物形成复合物。例如,通过使用pH敏感脂质、灭活病毒颗粒、溶酶体溶解肽和聚合物可以实现质粒的内体释放。最少被探索的基因递送系统之一是主要由合成短肽组成的系统。肽可以出于特定目的被纳入多组分基因递送复合物中,例如用于DNA凝聚、细胞特异性靶向、溶酶体溶解或核运输。本综述的目的是:(i)探索肽 - DNA相互作用的概念和实验方面;(ii)批判性地评估肽用于有效基因转移的可能性;(iii)概述肽在增强其他基因递送系统有效性方面的应用。总体而言,基于肽的基因递送系统似乎具有作为商业上可行的基因递送产品的巨大潜力。

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