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B-cell–lineage immunogen design in vaccine development with HIV-1 as a case study

机译:B细胞谱系免疫原设计在疫苗开发与HIV-1作为案例研究

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摘要

Failure of immunization with the HIV-1 envelope to induce broadly neutralizing antibodies against conserved epitopes is a major barrier to producing a preventive HIV-1 vaccine. Broadly neutralizing monoclonal antibodies (BnAbs) from those subjects who do produce them after years of chronic HIV-1 infection have one or more unusual characteristics, including polyreactivity for host antigens, extensive somatic hypermutation and long, variable heavy-chain third complementarity-determining regions, factors that may limit their expression by host immunoregulatory mechanisms. The isolation of BnAbs from HIV-1–infected subjects and the use of computationally derived clonal lineages as templates provide a new path for HIV-1 vaccine immunogen design. This approach, which should be applicable to many infectious agents, holds promise for the construction of vaccines that can drive B cells along rare but desirable maturation pathways.
机译:用HIV-1封装免疫的破坏,以诱导宽度中和抗保守表位的抗体是产生预防性HIV-1疫苗的主要障碍。从多年慢性HIV-1感染后产生它们的受试者的那些受试者的单克隆抗体(BNABs)具有一种或多种不寻常的特征,包括宿主抗原的结果,广泛的体细胞增强和长,可变的重链第三互补性决定区,可能通过宿主免疫调节机制限制其表达的因素。从HIV-1感染的受试者中分离BNABs和使用计算衍生的克隆谱系作为模板提供了HIV-1疫苗免疫原设计的新路径。这种方法应该适用于许多传染病,持有承担疫苗的承担承担能够沿着罕见但理想的成熟途径驱动B细胞的疫苗。

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