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Development of broadly neutralizing antibodies in HIV-1 infected elite neutralizers

机译:在HIV-1受感染的精英中加线中的大致中和抗体的研制

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Broadly neutralizing antibodies (bNAbs), able to prevent viral entry by diverse global viruses, are a major focus of HIV vaccine design, with data from animal studies confirming their ability to prevent HIV infection. However, traditional vaccine approaches have failed to elicit these types of antibodies. During chronic HIV infection, a subset of individuals develops bNAbs, some of which are extremely broad and potent. This review describes the immunological and virological factors leading to the development of bNAbs in such "elite neutralizers". The features, targets and developmental pathways of bNAbs from their precursors have been defined through extraordinarily detailed within-donor studies. These have enabled the identification of epitope-specific commonalities in bNAb precursors, their intermediates and Env escape patterns, providing a template for vaccine discovery. The unusual features of bNAbs, such as high levels of somatic hypermutation, and precursors with unusually short or long antigen-binding loops, present significant challenges in vaccine design. However, the use of new technologies has led to the isolation of more than 200 bNAbs, including some with genetic profiles more representative of the normal immunoglobulin repertoire, suggesting alternate and shorter pathways to breadth. The insights from these studies have been harnessed for the development of optimized immunogens, novel vaccine regimens and improved delivery schedules, which are providing encouraging data that an HIV vaccine may soon be a realistic possibility.
机译:大致中和抗体(BNABs),能够通过不同的全球病毒预防病毒进入,是HIV疫苗设计的主要关注点,具有来自动物研究的数据,证实了它们预防艾滋病毒感染的能力。然而,传统的疫苗方法未能引发这些类型的抗体。在慢性艾滋病毒感染期间,个体的子集发展BNABs,其中一些是非常广泛和强大的。该审查描述了导致这种“精英中加线”中BNAB的免疫学和病毒学因素。通过非常详细的供体研究,已经定义了来自其前体的BNAB的特征,目标和发育途径。这些使得能够鉴定BNAB前体,其中间体和ENV逃生模式的表位特异性常见,为疫苗发现提供模板。 BNABs的不寻常特征,例如高水平的体重率和具有异常短或长抗原结合环的前体,在疫苗设计中具有显着的挑战。然而,新技术的使用导致了200多个BNAB的隔离,包括一些具有遗传性的遗传曲线,更多代表正常免疫球蛋白曲目,暗示宽度和较短的途径。这些研究的见解已经利用了优化的免疫原,新型疫苗方案和改进的递送时间表的发展,这提供了令人鼓舞的数据,即HIV疫苗可能很快是一种现实的可能性。

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