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从化学计量参数预测体内HIV-1传播和抗体中和效力。

Predicting HIV-1 transmission and antibody neutralization efficacy in vivo from stoichiometric parameters.

作者信息

Brandenberg Oliver F, Magnus Carsten, Rusert Peter, Günthard Huldrych F, Regoes Roland R, Trkola Alexandra

机构信息

Institute of Medical Virology, University of Zürich, Zurich, Switzerland.

Division of Infectious Diseases and Hospital Epidemiology, University Hospital Zurich, Zurich, Switzerland.

出版信息

PLoS Pathog. 2017 May 4;13(5):e1006313. doi: 10.1371/journal.ppat.1006313. eCollection 2017 May.

Abstract

The potential of broadly neutralizing antibodies targeting the HIV-1 envelope trimer to prevent HIV-1 transmission has opened new avenues for therapies and vaccines. However, their implementation remains challenging and would profit from a deepened mechanistic understanding of HIV-antibody interactions and the mucosal transmission process. In this study we experimentally determined stoichiometric parameters of the HIV-1 trimer-antibody interaction, confirming that binding of one antibody is sufficient for trimer neutralization. This defines numerical requirements for HIV-1 virion neutralization and thereby enables mathematical modelling of in vitro and in vivo antibody neutralization efficacy. The model we developed accurately predicts antibody efficacy in animal passive immunization studies and provides estimates for protective mucosal antibody concentrations. Furthermore, we derive estimates of the probability for a single virion to start host infection and the risks of male-to-female HIV-1 transmission per sexual intercourse. Our work thereby delivers comprehensive quantitative insights into both the molecular principles governing HIV-antibody interactions and the initial steps of mucosal HIV-1 transmission. These insights, alongside the underlying, adaptable modelling framework presented here, will be valuable for supporting in silico pre-trial planning and post-hoc evaluation of HIV-1 vaccination or antibody treatment trials.

摘要

靶向HIV-1包膜三聚体的广谱中和抗体预防HIV-1传播的潜力为治疗和疫苗开辟了新途径。然而,其应用仍然具有挑战性,深入了解HIV与抗体相互作用的机制以及黏膜传播过程将有助于解决这一问题。在本研究中,我们通过实验确定了HIV-1三聚体与抗体相互作用的化学计量参数,证实一个抗体的结合足以中和三聚体。这定义了HIV-1病毒体中和的数值要求,从而能够对体外和体内抗体中和效果进行数学建模。我们开发的模型准确预测了动物被动免疫研究中的抗体效果,并提供了保护性黏膜抗体浓度的估计值。此外,我们还得出了单个病毒体引发宿主感染的概率以及每次性交时男性向女性传播HIV-1的风险估计值。因此,我们的工作为HIV与抗体相互作用的分子原理以及黏膜HIV-1传播的初始步骤提供了全面的定量见解。这些见解以及本文提出的基础、可适应的建模框架,对于支持HIV-1疫苗接种或抗体治疗试验的计算机模拟预试验规划和事后评估将具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8318/5417720/9889ec2d3055/ppat.1006313.g001.jpg

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