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首页> 外文期刊>Biomaterials >2-Methacryloyloxyethyl phosphorylcholine polymer (MPC)-coating improves the transfection activity of GALA-modified lipid nanoparticles by assisting the cellular uptake and intracellular dissociation of plasmid DNA in primary hepatocytes.
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2-Methacryloyloxyethyl phosphorylcholine polymer (MPC)-coating improves the transfection activity of GALA-modified lipid nanoparticles by assisting the cellular uptake and intracellular dissociation of plasmid DNA in primary hepatocytes.

机译:2-甲基丙烯酰氧基乙基磷酸胆碱聚合物(MPC)涂层通过协助原代肝细胞中质粒DNA的细胞摄取和细胞内解离,提高了GALA修饰的脂质纳米颗粒的转染活性。

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摘要

We previously reported that modification of GALA peptide on the surface of liposomes enhanced fusion with endosomal membrane, and cytoplasmic release of encapsulated macromolecules. We report herein that an additional coating of GALA-modified liposomes with 2-methacryloyloxyethyl phosphorylcholine (MPC) polymer resulted in a two order of magnitude enhancement in the transfection activity of encapsulating plasmid DNA (pDNA). Quantification of the delivered gene copies in whole cells and isolated nuclei revealed that the increase of transfection activity can be attributed to improved efficiencies in cellular uptake and post-nuclear delivery processes. Imaging studies revealed that the intracellular dissociation of pDNA from the lipid envelope is enhanced by GALA modification and further coating with MPC polymer in a stepwise manner. The MPC polymer-coating decreased the zeta-potential of GALA-modified liposomes, suggesting that it assisted in the functional display of negatively charged GALA on the cationic liposomes by providing shielding from mutual electrostatic interactions. Collectively, these data indicate that MPC polymer-coating induced the fusogenic activity of the GALA-modified envelope with endosomes, leading to a more effective cytoplasmic release pDNA. The extensive fusion of the lipid envelope may also reduce electrostatic interactions between mRNA and cationic lipid components, thereby resulting in an enhancement in the translation process.
机译:我们以前报道脂质体表面上的GALA肽的修饰增强了与内体膜的融合,并增强了封装大分子的胞质释放。我们在本文中报道,用2-甲基丙烯酰氧基乙基磷酰胆碱(MPC)聚合物对GALA修饰的脂质体进行的额外涂层导致封装质粒DNA(pDNA)的转染活性提高了两个数量级。对全细胞和分离的核中传递的基因拷贝的定量显示,转染活性的增加可归因于细胞摄取和核后传递过程中效率的提高。影像学研究表明,GALA修饰并逐步用MPC聚合物包被可增强pDNA从脂质包膜的细胞内解离。 MPC聚合物涂层降低了GALA修饰脂质体的ζ电位,表明它通过提供相互静电相互作用的屏蔽作用,有助于阳离子脂质体上带负电荷的GALA的功能展示。总体而言,这些数据表明,MPC聚合物涂层诱导了内含体对GALA修饰的包膜的融合活性,从而导致更有效的胞质释放pDNA。脂质包膜的广泛融合还可以减少mRNA和阳离子脂质组分之间的静电相互作用,从而导致翻译过程的增强。

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