Wagner R, Deml L, Schirmbeck R, Reimann J, Wolf H
Institute of Medical Microbiology, University of Regensburg, Germany.
Behring Inst Mitt. 1994 Dec(95):23-34.
New insights into HIV-pathogenesis suggest that the cell mediated immune response might play a crucial role in controlling HIV infection by suppressing HIV-replication in CD4-positive cells by a lymphokine-like soluble factor and by killing HIV-infected cells via classical CTL mediated lysis. This type of a cellular immune response rather than an antibody response seems to be most promising to protect if not from infection, so at least from disease. Therefore rationally designed candidate vaccines should be capable of inducing a cell mediated immunity in addition to a humoral immune response. In order to avoid adverse side effects upon immunization, carefully selected antigens and epitopes should be presented in a favourable manner to the immune system. In previous experiments, we could demonstrate that the gag-polyprotein precursor, known to include a series of T-helper and CTL epitopes, assembles to highly immunogenic, complete noninfectious HIV-1 virus-like particles (VLP). Based on these VLP we developed a novel antigen presentation system, which allows the presentation of selected epitopes derived from HIV reading frames other than gag to the immune system. Alternatively complete derivatives of the HIV-1 external glycoprotein can be presented by the VLP. Immunological analysis of different VLP preparations in a BALB/c mouse model revealed the induction of a strong CTL response. The significance of these observations for future vaccine strategies is discussed.
对HIV发病机制的新见解表明,细胞介导的免疫反应可能在控制HIV感染中发挥关键作用,通过一种类淋巴因子的可溶性因子抑制CD4阳性细胞中的HIV复制,并通过经典的CTL介导的裂解作用杀死被HIV感染的细胞。这种细胞免疫反应而非抗体反应似乎最有希望提供保护,即便不能预防感染,至少也能预防疾病。因此,合理设计的候选疫苗除了诱导体液免疫反应外,还应能够诱导细胞介导的免疫。为避免免疫接种产生不良副作用,应将精心挑选的抗原和表位以有利于免疫系统的方式呈现。在先前的实验中,我们能够证明,已知包含一系列T辅助和CTL表位的gag多蛋白前体可组装成高度免疫原性的、完整的非感染性HIV-1病毒样颗粒(VLP)。基于这些VLP,我们开发了一种新型抗原呈递系统,该系统可将源自HIV除gag外其他阅读框的选定表位呈递给免疫系统。或者,HIV-1外膜糖蛋白的完整衍生物也可由VLP呈递。在BALB/c小鼠模型中对不同VLP制剂进行的免疫学分析显示诱导了强烈的CTL反应。本文讨论了这些观察结果对未来疫苗策略的意义。