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包裹质粒DNA的脂质体:脂质阳离子头部基团与疏水部分之间的间隔对基因表达效率的影响。

Plasmid DNA-encapsulating liposomes: effect of a spacer between the cationic head group and hydrophobic moieties of the lipids on gene expression efficiency.

作者信息

Obata Yosuke, Saito Shunsuke, Takeda Naoya, Takeoka Shinji

机构信息

Department of Life Science, Graduate School of Advanced Science and Engineering, Waseda University (TWIns), Shinjuku-ku, Tokyo 162-8480, Japan.

出版信息

Biochim Biophys Acta. 2009 May;1788(5):1148-58. doi: 10.1016/j.bbamem.2009.02.014. Epub 2009 Feb 26.

Abstract

We have synthesized a series of cationic amino acid-based lipids having a spacer between the cationic head group and hydrophobic moieties and examined the influence of the spacer on a liposome gene delivery system. As a comparable spacer, a hydrophobic spacer with a hydrocarbon chain composed of 0, 3, 5, 7, or 11 carbons, and a hydrophilic spacer with an oxyethylene chain (10 carbon and 3 oxygen molecules) were investigated. Plasmid DNA (pDNA)-encapsulating liposomes were prepared by mixing an ethanol solution of the lipids with an aqueous solution of pDNA. The zeta potentials and cellular uptake efficiency of the cationic liposomes containing each synthetic lipid were almost equivalent. However, the cationic lipids with the hydrophobic spacer were subject to fuse with biomembrane-mimicking liposomes. 1,5-Dihexadecyl-N-lysyl-N-heptyl-l-glutamate, having a seven carbon atom spacer, exhibited the highest fusogenic potential among the synthetic lipids. Increased fusion potential correlated with enhanced gene expression efficiency. By contrast, an oxyethylene chain spacer showed low gene expression efficiency. We conclude that a hydrophobic spacer between the cationic head group and hydrophobic moieties is a key component for improving pDNA delivery.

摘要

我们合成了一系列基于阳离子氨基酸的脂质,这些脂质在阳离子头部基团和疏水部分之间有一个间隔基团,并研究了该间隔基团对脂质体基因递送系统的影响。作为可比较的间隔基团,研究了具有由0、3、5、7或11个碳组成的烃链的疏水间隔基团,以及具有氧乙烯链(10个碳和3个氧分子)的亲水间隔基团。通过将脂质的乙醇溶液与pDNA的水溶液混合来制备包裹质粒DNA(pDNA)的脂质体。含有每种合成脂质的阳离子脂质体的ζ电位和细胞摄取效率几乎相同。然而,带有疏水间隔基团的阳离子脂质会与模拟生物膜的脂质体融合。具有七个碳原子间隔基团的1,5-二十六烷基-N-赖氨酰-N-庚基-L-谷氨酸在合成脂质中表现出最高的融合潜力。融合潜力的增加与基因表达效率的提高相关。相比之下,氧乙烯链间隔基团显示出较低的基因表达效率。我们得出结论,阳离子头部基团和疏水部分之间的疏水间隔基团是提高pDNA递送的关键组成部分。

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