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衰老对脂质体分散体物理稳定性的影响。

The effect of aging on the physical stability of liposome dispersions.

作者信息

Grit M, Crommelin D J

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, University of Utrecht, The Netherlands.

出版信息

Chem Phys Lipids. 1992 Sep;62(2):113-22. doi: 10.1016/0009-3084(92)90089-8.

Abstract

In this study, the effect of aging, in terms of hydrolytic decomposition of the bilayer forming (phospho)lipids, on the physical stability of aqueous liposome dispersion was investigated in partially hydrogenated egg phosphatidylcholine (PHEPC) and egg phosphatidylglycerol (EPG) containing liposomes with or without cholesterol. The physical stability of the liposome dispersions was assessed by measuring the leak-in rate of a non-bilayer interacting hydrophilic marker molecule, calcein and changes in the particle size and its distribution in time. Additionally, permeability of either partially hydrolysed phospholipids or exogenous lyso-phosphatidylcholine(LPC) containing bilayers was calculated. The experiments were performed at 40 degrees C. Liposome dispersions were aged artificially by storing at 60 degrees C. The size of the liposomes and polydispersity index of the dispersions, in general, did not change significantly. The leak-in rate of calcein in externally added LPC containing liposomes was increased relative to the incorporated LPC concentration. The higher the LPC content of the bilayers, the higher the leak-in rate of calcein into liposomes. The leak-in rate of calcein, however, decreased first in partially hydrolysed phospholipids containing liposomes up to around 10% of hydrolysis and, afterwards, it started to increase. The leak-in rate was always lower in partially hydrolysed phospholipids containing liposomes than externally added LPC containing ones. Furthermore, the permeability of cholesterol containing bilayers was also always lower than the bilayers without cholesterol. In conclusion, addition of LPC into liposomal bilayers increases the permeability of bilayer. However, bilayers containing the hydrolysis products of phospholipids, both lyso-phospholipids and free fatty acids, did not show any enhanced permeability up to around 15% hydrolysis. Bilayer permeability is enhanced above 15% hydrolysis.

摘要

在本研究中,针对部分氢化卵磷脂(PHEPC)和含或不含胆固醇的鸡蛋磷脂酰甘油(EPG)脂质体,研究了老化(就形成双层的(磷酸)脂质的水解分解而言)对水性脂质体分散体物理稳定性的影响。通过测量非双层相互作用的亲水性标记分子钙黄绿素的渗漏率以及颗粒大小及其随时间的分布变化,评估脂质体分散体的物理稳定性。此外,还计算了含有部分水解磷脂或外源性溶血磷脂酰胆碱(LPC)的双层的渗透率。实验在40℃下进行。脂质体分散体通过在60℃下储存进行人工老化。一般来说,脂质体的大小和分散体的多分散指数没有显著变化。相对于掺入的LPC浓度,外部添加含LPC的脂质体中钙黄绿素的渗漏率增加。双层中LPC含量越高,钙黄绿素渗入脂质体的渗漏率越高。然而,在含有部分水解磷脂的脂质体中,钙黄绿素的渗漏率在水解率达到约10%之前首先下降,之后开始上升。含有部分水解磷脂的脂质体中的渗漏率始终低于外部添加含LPC的脂质体。此外,含胆固醇双层的渗透率也始终低于不含胆固醇的双层。总之,向脂质体双层中添加LPC会增加双层的渗透率。然而,含有磷脂水解产物(溶血磷脂和游离脂肪酸)的双层在水解率达到约15%之前未显示出任何渗透率的提高。水解率超过15%时双层渗透率会提高。

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