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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Characterization of the inhibitory effect of PEG-lipid conjugates on the intracellular delivery of plasmid and antisense DNA mediated by cationic lipid liposomes
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Characterization of the inhibitory effect of PEG-lipid conjugates on the intracellular delivery of plasmid and antisense DNA mediated by cationic lipid liposomes

机译:PEG-脂质缀合物对阳离子脂质脂质体介导的质粒和反义DNA细胞内递送的抑制作用的表征

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摘要

Poly(ethylene glycol)-lipid (PEG-lipid) conjugates are widely used in the field of liposomal drug delivery to provide a polymer coat that can confer favorable pharmacokinetic characteristics on particles in the circulation. More recently these lipids have been employed as an essential component in the self-assembly of cationic and neutral lipids with polynucleic acids to form small, stable lipid/DNA complexes that exhibit long circulation times in vivo and accumulate at sites of disease. However, the presence of a steric barrier lipid might be expected to inhibit the transfection activity of lipid/DNA complexes by reducing particl-emembrane contact. In this study we examine what effect varying the size of the hydrophobic canchor and hydrophilic head group of PEG-lipids has on both gene and antisense delivery into cells in cluture. Lipid/DNA complexes were made using unilamellar vesicles composed of 5 mole% PEG-lipids in combination with equimolar dioleoylphos-phatidylethanolamine and the cationic lipid dioleyldimethylammonium chloride. Using HeLa and HepG2 cells we show that under the conditions employed PEG-lipids had a minimal effect on the binding and subsequent endocytosis of lipid/DNA complexes but they severely inhibited active gene transfer and the endosomal release of antisense oligodeoxynucleotides into the cytoplasm. Decreasing the size of the hydrophobic anchor or the size of the grafted hydrophilic PEG moiety enhanced DNA transfer by the complexes.
机译:聚(乙二醇)-脂质(PEG-脂质)缀合物被广泛用于脂质体药物递送领域,以提供可以赋予循环中的颗粒有利的药代动力学特性的聚合物涂层。最近,这些脂质已被用作阳离子脂质和中性脂质与多核酸的自组装中的基本成分,以形成小的,稳定的脂质/ DNA复合物,其在体内表现出长的循环时间并积聚在疾病部位。但是,空间屏障脂质的存在可望通过减少颗粒与膜的接触而抑制脂质/ DNA复合物的转染活性。在这项研究中,我们研究了改变PEG脂质疏水性canchor和亲水性头基的大小对基因和反义传递到细胞中的影响。使用由5摩尔%PEG-脂质组成的单层囊泡与等摩尔的二油酰基磷-磷脂酰乙醇胺和阳离子脂质二油酰基二甲基氯化铵结合来制备脂质/ DNA复合物。使用HeLa和HepG2细胞,我们显示在所用条件下,PEG-脂质对脂质/ DNA复合物的结合和随后的内吞作用几乎没有影响,但它们严重抑制了活性基因转移和反义寡聚脱氧核糖核酸内体释放到细胞质中。减小疏水锚的大小或接枝的亲水PEG部分的大小可增强复合物的DNA转移。

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