Davidsen Jesper, Rosenkrands Ida, Christensen Dennis, Vangala Anil, Kirby Daniel, Perrie Yvonne, Agger Else Marie, Andersen Peter
Vaccine Development, Adjuvant Research, Statens Serum Institut, DK-2300 Copenhagen, Denmark.
Biochim Biophys Acta. 2005 Dec 10;1718(1-2):22-31. doi: 10.1016/j.bbamem.2005.10.011. Epub 2005 Nov 14.
Incorporation of the glycolipid trehalose 6,6'-dibehenate (TDB) into cationic liposomes composed of the quaternary ammonium compound dimethyldioctadecylammonium (DDA) produce an adjuvant system which induces a powerful cell-mediated immune response and a strong antibody response, desirable for a high number of disease targets. We have used differential scanning calorimetry (DSC) to investigate the effect of TDB on the gel-fluid phase transition of DDA liposomes and to demonstrate that TDB is incorporated into DDA liposome bilayers. Transmission Electron Microscopy (TEM) and cryo-TEM confirmed that liposomes were formed when a lipid film of DDA containing small amounts of TDB was hydrated in an aqueous buffer solution at physiological pH. Furthermore, time development of particle size and zeta potential of DDA liposomes incorporating TDB during storage at 4 degrees C and 25 degrees C, indicates that TDB effectively stabilizes the DDA liposomes. Immunization of mice with the mycobacterial fusion protein Ag85B-ESAT-6 in DDA-TDB liposomes induced a strong, specific Th1 type immune response characterized by substantial production of the interferon-gamma cytokine and high levels of IgG2b isotype antibodies. The lymphocyte subset releasing the interferon-gamma was identified as CD4 T cells.
将糖脂海藻糖6,6'-二山嵛酸酯(TDB)掺入由季铵化合物二甲基二十八烷基铵(DDA)组成的阳离子脂质体中,可产生一种佐剂系统,该系统能诱导强大的细胞介导免疫反应和强烈的抗体反应,这对于众多疾病靶点来说是很理想的。我们使用差示扫描量热法(DSC)来研究TDB对DDA脂质体凝胶-流体相转变的影响,并证明TDB被掺入到DDA脂质体双层中。透射电子显微镜(TEM)和冷冻电镜证实,当含有少量TDB的DDA脂质膜在生理pH值的水性缓冲溶液中水合时,会形成脂质体。此外,在4℃和25℃储存期间,掺入TDB的DDA脂质体的粒径和zeta电位随时间的变化表明,TDB能有效稳定DDA脂质体。用DDA-TDB脂质体中的分枝杆菌融合蛋白Ag85B-ESAT-6免疫小鼠,可诱导强烈的、特异性的Th1型免疫反应,其特征是大量产生干扰素-γ细胞因子和高水平的IgG2b同种型抗体。释放干扰素-γ的淋巴细胞亚群被鉴定为CD4 T细胞。