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Role of Intracellular Cationic Liposome–DNA Complex Dissociation in Transfection Mediated by Cationic Lipids

机译:细胞内阳离子脂质体-DNA复合体解离在阳离子脂质介导的转染中的作用

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The cationic lipid-mediated gene transfer process involves sequential steps: internalization of the cationic lipid–DNA complexes inside the cells via an endocytosis-like mechanism, escape from endosomes, dissociation of the complex, and finally entry of free DNA into the nucleus. However, cationic lipid–DNA complex dissociation in the cytoplasm and the ability of the subsequently released DNA to enter the nucleus have not yet been demonstrated. In this report we showed, using confocal laser scanning analysis, that microinjection of a double fluorescent-labeled cationic lipid–pCMV-LacZ plasmid complex into the cytoplasm of HeLa cells results in efficient complex dissociation. However, the released DNA did not enter the nucleus, and no significant transfection could be detected. In contrast, nuclear microinjection of the cationic lipid–pCMV-LacZ plasmid complex resulted in efficient complex dissociation and transfection of all the cells. Taken together, the data suggest that intracellular dissociation of the cationic lipid–DNA complex is not a limiting step for transfection as previously thought.
机译:阳离子脂质介导的基因转移过程包括以下步骤:通过内吞作用机制将阳离子脂质– DNA复合物内在化,从内体逃逸,复合物解离,最后使游离DNA进入细胞核。然而,阳离子脂质-DNA复合物在细胞质中的解离以及随后释放的DNA进入细胞核的能力尚未得到证实。在本报告中,我们使用共聚焦激光扫描分析表明,将双重荧光标记的阳离子脂质– pCMV-LacZ质粒复合物显微注射到HeLa细胞的细胞质中可导致有效的复合物解离。但是,释放的DNA没有进入细胞核,也没有检测到明显的转染。相比之下,阳离子脂质-pCMV-LacZ质粒复合物的核显微注射导致所有细胞的有效复合物解离和转染。综上所述,数据表明阳离子脂质-DNA复合物的细胞内解离不是如先前所认为的转染的限制步骤。

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