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合成分枝杆菌单酰基甘油类似物的掺入稳定了二甲基二辛基铵脂质体,并增强了其体内佐剂效应。

Incorporation of a synthetic mycobacterial monomycoloyl glycerol analogue stabilizes dimethyldioctadecylammonium liposomes and potentiates their adjuvant effect in vivo.

机构信息

Department of Pharmaceutics and Analytical Chemistry, University of Copenhagen, Copenhagen Ø, Denmark.

出版信息

Eur J Pharm Biopharm. 2011 Jan;77(1):89-98. doi: 10.1016/j.ejpb.2010.10.001. Epub 2010 Oct 20.

Abstract

The combination of delivery systems such as cationic liposomes and immunopotentiating molecules is a promising approach for the rational design of vaccine adjuvants. In this study, a synthetic analogue of the mycobacterial lipid monomycoloyl glycerol (MMG), referred to as MMG-1, was synthesized and combined with the cationic surfactant dimethyldioctadecylammonium (DDA). The purpose of the study was to provide a thorough pharmaceutical characterization of the resulting DDA/MMG-1 binary system and to evaluate how incorporation of MMG-1 affected the adjuvant activity of DDA liposomes. Thermal analyses demonstrated that MMG-1 was incorporated into the DDA lipid bilayers, and cryo-transmission electron microscopy (TEM) confirmed that liposomes were formed. The particles had a polydisperse size distribution and an average diameter of approximately 400 nm. Evaluation of the colloidal stability indicated that at least 18 mol% MMG-1 was required to stabilize the DDA liposomes as the average particle size remained constant during storage for 6 months. The improved colloidal stability is most likely caused by increased hydration of the lipid bilayer. This was demonstrated by studying Langmuir-Blodgett monolayers of DDA and MMG-1 which revealed an increased surface pressure in the presence of high concentrations of MMG-1 when the DDA/MMG-1 monolayers were fully compressed, indicating an increased interaction with water due to enhanced hydration of the lipid head groups. Finally, immunization of mice with the tuberculosis fusion antigen Ag85B-ESAT-6 and DDA/MMG-1 liposomes induced a strong cell-mediated immune response characterized by a mixed Th1/Th17 profile and secretion of IgG1 and IgG2c antibodies. The Th1/Th17-biased immunostimulatory effect was increased in an MMG-1 concentration-dependent manner with maximal observed effect at 31 mol% MMG-1. Thus, incorporation of 31 mol% MMG-1 into DDA liposomes results in an adjuvant system with favorable physical as well as immunological properties.

摘要

脂质体等递药系统与免疫增强分子的联合应用是合理设计疫苗佐剂的一种有前途的方法。在本研究中,合成了一种分枝杆菌脂质单酰基甘油(MMG)的类似物,称为 MMG-1,并将其与阳离子表面活性剂二甲基双十八烷基溴化铵(DDA)联合使用。本研究的目的是对所得的 DDA/MMG-1 二元系统进行全面的药物特性描述,并评估 MMG-1 的掺入如何影响 DDA 脂质体的佐剂活性。热分析表明 MMG-1 被掺入 DDA 脂质双层中,而冷冻透射电子显微镜(TEM)证实了脂质体的形成。这些颗粒具有多分散的粒径分布,平均直径约为 400nm。胶体稳定性评估表明,至少需要 18mol%的 MMG-1 才能稳定 DDA 脂质体,因为在 6 个月的储存过程中平均粒径保持不变。胶体稳定性的提高很可能是由于脂质双层的水合作用增强所致。这可以通过研究 DDA 和 MMG-1 的 Langmuir-Blodgett 单层来证明,当 DDA/MMG-1 单层完全压缩时,在高浓度 MMG-1 存在下,表面压力增加,这表明由于脂质头部基团的水合作用增强,与水的相互作用增强。最后,用结核分枝杆菌融合抗原 Ag85B-ESAT-6 和 DDA/MMG-1 脂质体免疫小鼠诱导了强烈的细胞介导免疫应答,其特征为混合 Th1/Th17 谱和 IgG1 和 IgG2c 抗体的分泌。MMG-1 浓度依赖性地增强了 Th1/Th17 偏向的免疫刺激作用,在 31mol% MMG-1 时观察到最大效应。因此,将 31mol% MMG-1 掺入 DDA 脂质体中会产生一种具有良好物理和免疫特性的佐剂系统。

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