首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Liposomes based on dimethyldioctadecylammonium promote a depot effect and enhance immunogenicity of soluble antigen
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Liposomes based on dimethyldioctadecylammonium promote a depot effect and enhance immunogenicity of soluble antigen

机译:基于二甲基二十八烷基铵盐的脂质体可促进贮库效应并增强可溶性抗原的免疫原性

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The mechanism behind the immunostimulatory effect obtained with the cationic liposomal vaccine adjuvant DDA:TDB remains unclear. One of the proposed hypotheses is the 'depot effect' in which the liposomal carrier helps to retain the antigen at the injection site thereby increasing the time of vaccine exposure to the immune cells. In the present study we devise a method to quantify the in vivo movement of liposomes and vaccine antigen using the radioisotopes H-3 and I-125 respectively. H-3-labeled liposomes composed of dimethyldioctaclecylammonium bromide (DDA) or an 8:1 molar ratio of DDA and trehalose 6,6-dibehenate (TDB) were administered in combination with I-125-labeled Ag85B-ESAT-6 antigen, both via intramuscular and subcutaneous injection to mice. Furthermore characterisation of the liposomal system in simulated in vivo conditions was undertaken. Our results show that this dual-labeling technique is functional and reproducible. The administration of Ag85B-ESAT-6 without a liposomal carrier leads to rapid dissemination of the antigen from the site of injection. The administration of Ag85B-ESAT-6 together with either DDA or DDA:TDB liposomes however leads to deposition of the antigen at the injection site with detectable levels still being present 14 days post injection. Neither the incorporation of TDB nor the route of injection had any significant influence on the depot effect of DDA-based liposomes. The presence of TDB in DDA liposomes improves draining of liposomes to the lymph node in addition to increasing monocyte influx to the site of injection as highlighted by the intensive blue colouring of the injection site after pontamine blue staining of phagocytic cells in vivo. Our findings provide conclusive evidence for a cationic liposome-mediated deposition of antigen at the injection site with improved monocyte infiltration.
机译:阳离子脂质体疫苗佐剂DDA:TDB获得的免疫刺激作用的机制尚不清楚。提出的假设之一是“贮库效应”,其中脂质体载体有助于将抗原保留在注射部位,从而增加了疫苗暴露于免疫细胞的时间。在本研究中,我们设计了一种方法,分别使用放射性同位素H-3和I-125来定量脂质体和疫苗抗原的体内运动。将H-3-标记的脂质体与I-125标记的Ag85B-ESAT-6抗原联合使用,该脂质体由二甲基二辛基溴化铵(DDA)组成,或者DDA与海藻糖6,6-二山梨酸酯(TDB)摩尔比为8:1通过肌内和皮下注射给小鼠。此外,在模拟的体内条件下对脂质体系统进行了表征。我们的结果表明,这种双重标记技术具有功能性和可重复性。没有脂质体载体的Ag85B-ESAT-6的施用导致抗原从注射位点快速扩散。但是,将Ag85B-ESAT-6与DDA或DDA:TDB脂质体一起给药会导致抗原在注射部位沉积,注射后14天仍可检测到水平。 TDB的掺入或注射途径均对基于DDA的脂质体的长效作用没有任何重大影响。 DDA脂质体中TDB的存在除了增加单核细胞向注射位点的流入量外,还改善了脂质体向淋巴结的引流,这是体内吞噬细胞的pontamine蓝色染色后注射位点呈深蓝色所突出显示的。我们的发现为阳离子脂质体介导的抗原在注射部位的单核细胞浸润改善提供了确凿的证据。

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