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首页> 外文期刊>Biomaterials >Envelope-type lipid nanoparticles incorporating a short PEG-lipid conjugate for improved control of intracellular trafficking and transgene transcription.
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Envelope-type lipid nanoparticles incorporating a short PEG-lipid conjugate for improved control of intracellular trafficking and transgene transcription.

机译:包含短PEG-脂质缀合物的信封型脂质纳米颗粒,可改善对细胞内运输和转基因转录的控制。

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Lipid envelope-type nanoparticles are promising carriers for gene delivery. The modification of liposomes with polyethyleneglycol (PEG) can often be useful in liposomal formation and pharmacokinetics. However, there is a dilemma concerning the use of PEG because of its poor intracellular trafficking properties. To overcome this problem, in the present study, we report on a strategy for improving the intracellular trafficking of PEG-modified lipid particles by incorporating a short PEG lipid. The findings presented here show that the incorporation of tetra(ethylene)glycol (TEG)-conjugated cholesterol into a liposome composition is useful in controlling the number of lipid envelopes, resulting in an improvement in particle uniformity with a reduced particle size. The TEG-modified lipid particles were found to enhance transfection activity by more than 100-fold. This increase is attributed to an enhancement of cellular uptake, and nuclear transcription by improving intracellular decoating. Moreover, the use of a various short PEG lipids in lipid particle formation showed a clear threshold polymerization degree (less or equal 25: PEG1100), for achieving stimulated transfection activity. Collectively, the use of short PEG lipid promises to be useful in developing an efficient non-viral gene vector.
机译:脂质包膜型纳米颗粒是有前途的基因传递载体。用聚乙二醇(PEG)修饰脂质体通常可用于脂质体形成和药代动力学。然而,由于PEG的细胞内运输特性差,因此在使用PEG方面存在两难选择。为了克服这个问题,在本研究中,我们报告了一种通过掺入短PEG脂质改善PEG修饰脂质颗粒的细胞内运输的策略。此处呈现的发现表明,将四(乙二醇)-缀合的胆固醇掺入脂质体组合物中可用于控制脂质包膜的数量,从而导致颗粒均一性的提高和粒径的减小。发现TEG修饰的脂质颗粒可将转染活性提高100倍以上。这种增加归因于细胞摄取的增加以及通过改善细胞内脱涂层的核转录。此外,在脂质颗粒形成中使用各种短的PEG脂质显示出清晰的阈值聚合度(小于或等于25:PEG1100),以实现刺激的转染活性。总之,使用短的PEG脂质有望在开发有效的非病毒基因载体中有用。

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