Jain Vikas, Sahu Rajnish, Misra-Bhattacharya Shailja, Vyas Suresh Prasad, Kohli Dharmveer
Drug Delivery Reasearch Laboratory, Department of Pharmaceutical Sciences, Dr Hari Singh Gour University, Sagar, India.
J Drug Target. 2008 Nov;16(9):706-15. doi: 10.1080/10611860802295607.
Currently, there is a clinical need for more effective vaccine for hepatitis B that induces robust cell-mediated immune response capable of viral clearance in chronic hepatitis B infection. In the present study, hepatitis B vaccines formulations were designed by loading the hepatitis B surface antigen into liposomes adjuvanted with rough lipopolysaccharide (Re-LPS) and lpxL1 LPS using conventional rotatory evaporation method and were characterized for various parameters, such as vesicle shape and surface morphology, size and size distribution, entrapment efficiency, turbidity, and in vitro release pattern. The immunoreactivity in mice was evaluated by measuring anti-HBs IgG titer and compared with alum-adsorbed HBsAg solution, plain HBsAg, and liposomal HBsAg formulations. The formulations were also evaluated for cell-mediated immune response by HBsAg specific proliferation of spleenocytes after secondary immunization and re-stimulation in vitro with the same antigen. Simultaneous estimation of cytokines (IL-4, IFN-gamma) was also carried out. Ex vivo cellular uptake study was performed by fluorescence microscopy. Results indicate that the serum IgG titer obtained after i.m administration of Re-LPS- and lpxL1 LPS-adjuvanted liposomal HBsAg formulation was equivalent to alum-adsorbed HBsAg formulation but was more responsive, sustained, and significantly higher than the corresponding liposomal HBsAg and plain HBsAg formulations. Incorporation of lpxL1 LPS into the liposomal HBsAg increased the stimulation index (SI) 6-10 times as compared with plain HBsAg. Re-LPS- and lpxL1 LPS-adjuvanted liposomal HBsAg formulations induced stronger cellular immune response with a predominant Interferon-gamma (IFN-gamma) level than those induced by free HBsAg alone, alum-adsorbed HBsAg, and non-adjuvanted liposomal HBsAg. Probably, the possible mechanism for the enhancement of cellular immunity in addition to humoral immunity by LPS-adjuvanted liposomal HBsAg formulation is due to marked enhancement of immunological presentation and recruitment of antigen via macrophage and antigen-presenting cells (APCs).
目前,临床上需要一种更有效的乙型肝炎疫苗,该疫苗能诱导强大的细胞介导免疫反应,从而在慢性乙型肝炎感染中实现病毒清除。在本研究中,采用传统旋转蒸发法将乙型肝炎表面抗原负载到佐剂为粗糙脂多糖(Re-LPS)和lpxL1 LPS的脂质体中,设计出乙型肝炎疫苗制剂,并对其进行了各种参数的表征,如囊泡形状和表面形态、大小和大小分布、包封率、浊度以及体外释放模式。通过测量抗-HBs IgG滴度评估小鼠体内的免疫反应性,并与明矾吸附的HBsAg溶液、纯HBsAg和脂质体HBsAg制剂进行比较。还通过二次免疫后脾细胞对HBsAg的特异性增殖以及在体外使用相同抗原进行再刺激来评估制剂的细胞介导免疫反应。同时对细胞因子(IL-4、IFN-γ)进行了测定。通过荧光显微镜进行了体外细胞摄取研究。结果表明,肌肉注射Re-LPS和lpxLl LPS佐剂的脂质体HBsAg制剂后获得的血清IgG滴度与明矾吸附的HBsAg制剂相当,但反应更强、更持久,且显著高于相应的脂质体HBsAg和纯HBsAg制剂。与纯HBsAg相比,将lpxL1 LPS掺入脂质体HBsAg中可使刺激指数(SI)提高6至10倍。Re-LPS和lpxL1 LPS佐剂的脂质体HBsAg制剂诱导的细胞免疫反应比单独的游离HBsAg、明矾吸附的HBsAg和无佐剂脂质体HBsAg诱导的更强,且以干扰素-γ(IFN-γ)水平为主。可能,LPS佐剂脂质体HBsAg制剂除了体液免疫外增强细胞免疫的可能机制是由于通过巨噬细胞和抗原呈递细胞(APC)显著增强了免疫呈递和抗原募集。