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含带电和中性脂聚合物的聚乙二醇化胶束与脂质体的静电学

Electrostatics of PEGylated micelles and liposomes containing charged and neutral lipopolymers.

作者信息

Garbuzenko Olga, Zalipsky Samuel, Qazen Masoud, Barenholz Yechezkel

机构信息

Laboratory of Membrane and Liposome Research, Hebrew University-Hadassah Medical School, Jerusalem 91120, Israel.

出版信息

Langmuir. 2005 Mar 15;21(6):2560-8. doi: 10.1021/la0479105.

Abstract

The electrostatics of large unilamellar vesicles (LUVs) of various lipid compositions were determined and correlated with steric stabilization. The compositional variables studied include (a) degree of saturation, comparing the unsaturated egg phosphatidylcholine (EPC) and the fully hydrogenated soy phosphatidylcholine (HSPC) as liposome-forming lipids; (b) the effect of 40 mol % cholesterol; (c) the effect of mole % of three methyl poly(ethylene glycol) (mPEG)-lipids (the negatively charged mPEG-distearoyl phosphoethanolamine (DSPE) and two uncharged lipopolymers, mPEG-distearoyl glycerol (DSG) and mPEG-oxycarbonyl-3-amino-1,2-propanediol distearoyl ester (DS)); and (d) the negatively charged phosphatidyl glycerol (PG). The lipid phases were as follows: liquid disordered (LD) for the EPC-containing LUV, solid ordered (SO) for the HSPC-containing LUV, and liquid ordered (LO) for either of those LUV with the addition of 40 mol % cholesterol. The LUV zeta potential and electrical surface potential (psi(0)) were determined. It was found that progressive addition of mPEG(2k)-DSPE to liposomes increases negative surface potential and reduces surface pH to a similar extent as the addition of PG. However, due to the "hidden charge effect", zeta potential was more negative for liposomes containing PG than for those containing mPEG(2k)-DSPE. Replacing mPEG-DSPE with mPEG(2k)-DS or mPEG-DSG had no effect on surface pH and surface potential, and zeta potential was approximately zero. Addition of low concentrations of cationic peptides (protamine sulfate and melittin) to PG- or mPEG-DSPE-containing liposomes neutralized the liposome negative surface potential to a similar extent. However, only in liposomes containing PG, did liposome aggregation occur. Replacing the negatively charged lipopolymer mPEG-DSPE with the neutral lipopolymers mPEG-DS or mPEG-DSG eliminates or reduces such interactions. The relevance of this effect to the liposome performance in vivo is discussed.

摘要

测定了不同脂质组成的大单层囊泡(LUVs)的静电学性质,并将其与空间稳定作用相关联。所研究的组成变量包括:(a)饱和度,比较作为脂质体形成脂质的不饱和鸡蛋磷脂酰胆碱(EPC)和完全氢化的大豆磷脂酰胆碱(HSPC);(b)40摩尔%胆固醇的影响;(c)三种甲基聚(乙二醇)(mPEG)-脂质(带负电荷的mPEG-二硬脂酰磷脂酰乙醇胺(DSPE)和两种不带电荷的脂聚合物,mPEG-二硬脂酰甘油(DSG)和mPEG-氧羰基-3-氨基-1,2-丙二醇二硬脂酸酯(DS))的摩尔百分比的影响;以及(d)带负电荷的磷脂酰甘油(PG)。脂质相如下:含EPC的LUV为液晶无序相(LD),含HSPC的LUV为固态有序相(SO),添加40摩尔%胆固醇的任何一种LUV为液晶有序相(LO)。测定了LUV的zeta电位和表面电势(ψ(0))。发现向脂质体中逐步添加mPEG(2k)-DSPE会增加负表面电势,并使表面pH降低,其程度与添加PG相似。然而,由于“隐藏电荷效应”,含PG的脂质体的zeta电位比含mPEG(2k)-DSPE的脂质体更负。用mPEG(2k)-DS或mPEG-DSG替代mPEG-DSPE对表面pH和表面电势没有影响,且zeta电位约为零。向含PG或mPEG-DSPE的脂质体中添加低浓度的阳离子肽(硫酸鱼精蛋白和蜂毒肽)会使脂质体的负表面电势中和程度相似。然而,只有在含PG的脂质体中才会发生脂质体聚集。用中性脂聚合物mPEG-DS或mPEG-DSG替代带负电荷的脂聚合物mPEG-DSPE可消除或减少此类相互作用。讨论了这种效应与脂质体在体内性能的相关性。

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