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阳离子脂质介导的基因递送:内吞体的内外过程

Gene delivery by cationic lipids: in and out of an endosome.

作者信息

Hoekstra D, Rejman J, Wasungu L, Shi F, Zuhorn I

机构信息

Department of Cell Biology, Section Membrane Cell Biology, University Medical Center Groningen, University of Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands.

出版信息

Biochem Soc Trans. 2007 Feb;35(Pt 1):68-71. doi: 10.1042/BST0350068.

Abstract

Cationic lipids are exploited as vectors ('lipoplexes') for delivering nucleic acids, including genes, into cells for both therapeutic and cell biological purposes. However, to meet therapeutic requirements, their efficacy needs major improvement, and better defining the mechanism of entry in relation to eventual transfection efficiency could be part of such a strategy. Endocytosis is the major pathway of entry, but the relative contribution of distinct endocytic pathways, including clathrin- and caveolae-mediated endocytosis and/or macropinocytosis is as yet poorly defined. Escape of DNA/RNA from endosomal compartments is thought to represent a major obstacle. Evidence is accumulating that non-lamellar phase changes of the lipoplexes, facilitated by intracellular lipids, which allow DNA to dissociate from the vector and destabilize endosomal membranes, are instrumental in plasmid translocation into the cytosol, a prerequisite for nuclear delivery. To further clarify molecular mechanisms and to appreciate and overcome intracellular hurdles in lipoplex-mediated gene delivery, quantification of distinct steps in overall transfection and proper model systems are required.

摘要

阳离子脂质被用作载体(“脂质复合物”),用于将包括基因在内的核酸输送到细胞中,以达到治疗和细胞生物学目的。然而,为了满足治疗需求,它们的功效需要大幅提高,更好地确定与最终转染效率相关的进入机制可能是该策略的一部分。内吞作用是主要的进入途径,但包括网格蛋白介导的内吞作用、小窝介导的内吞作用和/或巨胞饮作用在内的不同内吞途径的相对贡献尚未明确界定。DNA/RNA从内体区室逃逸被认为是一个主要障碍。越来越多的证据表明,细胞内脂质促进了脂质复合物的非层状相变,这使得DNA与载体解离并使内体膜不稳定,有助于质粒转运到细胞质中,这是核输送的前提条件。为了进一步阐明分子机制,并认识和克服脂质复合物介导的基因递送中的细胞内障碍,需要对整体转染中的不同步骤进行定量,并建立合适的模型系统。

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