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阳离子脂质可改善反义寡核苷酸的摄取,并防止其在培养细胞和人血清中降解。

Cationic lipids improve antisense oligonucleotide uptake and prevent degradation in cultured cells and in human serum.

作者信息

Capaccioli S, Di Pasquale G, Mini E, Mazzei T, Quattrone A

机构信息

Institute of General Pathology, Firenze, Italy.

出版信息

Biochem Biophys Res Commun. 1993 Dec 15;197(2):818-25. doi: 10.1006/bbrc.1993.2552.

Abstract

The power of antisense phosphodiester oligonucleotides (aODN) as regulatory molecules of gene expression is strongly limited by their low cellular uptake and very rapid nuclease-mediated degradation. This study deals with the effect of artificial cationic lipids on ODN cellular uptake and degradation in cell cultures and in human serum. At the ODN levels normally used in antisense-mediated gene regulation experiments, a cationic lipid, DOTAP, enhances the rate of ODN uptake more than 25 fold, but at lower ODN levels the effect of DOTAP is absent. These findings are consistent with a mechanism of ODN internalization by receptor-mediated saturable endocytosis that is bypassed by DOTAP. ODN degradation by nucleases is markedly prevented by DOTAP both in cultured cells and in human serum. Other cationic lipids, namely DOTMA and DOGS, exhibit very similar behaviour. The relatively slight cellular toxicity revealed by cationic lipids contribute to render these molecules very suitable for aODN vehiculation.

摘要

反义磷酸二酯寡核苷酸(aODN)作为基因表达调控分子的能力,因细胞摄取率低和核酸酶介导的快速降解而受到很大限制。本研究探讨了人工阳离子脂质对细胞培养物和人血清中ODN细胞摄取及降解的影响。在反义介导的基因调控实验通常使用的ODN水平下,一种阳离子脂质DOTAP可将ODN摄取率提高25倍以上,但在较低的ODN水平下,DOTAP则无此作用。这些发现与受体介导的可饱和内吞作用导致的ODN内化机制一致,而DOTAP可绕过该机制。在培养细胞和人血清中,DOTAP均可显著抑制核酸酶对ODN的降解。其他阳离子脂质,即DOTMA和DOGS,表现出非常相似的行为。阳离子脂质显示出相对轻微的细胞毒性,这使得这些分子非常适合用于aODN的载体运输。

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