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Effect of the Anchor in Polyethylene Glycol-Lipids on the Transfection Activity of PEGylated Cationic Liposomes Encapsulating DNA

机译:聚乙二醇脂质中的锚对包裹DNA的聚乙二醇化阳离子脂质体转染活性的影响

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摘要

The use of polyethylene glycol (PEG)-modified lipids (PEGlipids)as a component of cationic liposomes impairs the cytoplasmic delivery of the encapsulated cargos by reducing endosomal escape. While this results in a loss of gene expression of encapsulated plasmid DNA, PEG-modification is useful in that it permits the formation of small, stabilized particles. In the present study, the dilemma associated with the use of PEG was overcome by modifying liposomes with stearylated INF7 (STR-INF7), a membrane fusion-independent destabilizer of endosomes, and substituting hydrophobic lipid-anchors in the PEG-lipid. The cationic liposomes modified with a series of PEG-lipids showed a drastically impaired transgene expression. However, the incorporation of STR-INF7 recovered the gene expression, and this was found to be mainly dependent on the type of PEG lipid-anchor used. Of note, the fold increase in transfection activity was highest in cholesterolanchored PEG (>100-fold), whose enhanced endosomal escape was followed by imaging techniques. These data suggest that the structure of lipid-anchors in PEG affects the action of the peptides for inducing of endosomal escape.
机译:聚乙二醇(PEG)修饰的脂质(PEG脂质)作为阳离子脂质体的成分的使用通过减少内体逃逸而损害了被包裹货物的细胞质传递。尽管这会导致封装的质粒DNA的基因表达丧失,但PEG修饰非常有用,因为它允许形成小的稳定颗粒。在本研究中,通过使用硬脂化的INF7(STR-INF7)(一种不依赖内膜融合的去稳定剂)修饰脂质体,并在PEG-脂质中取代疏水脂质锚,克服了与PEG使用相关的难题。用一系列PEG-脂质修饰的阳离子脂质体显示出转基因表达严重受损。然而,STR-INF7的掺入恢复了基因表达,并且发现这主要取决于所使用的PEG脂质锚的类型。值得注意的是,转染活性的增加倍数在胆固醇锚定的PEG中最高(> 100倍),其内体逃逸增强,随后是成像技术。这些数据表明,PEG中脂质锚的结构影响肽诱导内体逃逸的作用。

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