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Optimal Combinations of Broadly Neutralizing Antibodies for Prevention and Treatment of HIV-1 Clade C Infection

机译:预防和治疗HIV-1进化枝C感染的广泛中和抗体的最佳组合

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摘要

The identification of a new generation of potent broadly neutralizing HIV-1 antibodies (bnAbs) has generated substantial interest in their potential use for the prevention and/or treatment of HIV-1 infection. While combinations of bnAbs targeting distinct epitopes on the viral envelope (Env) will likely be required to overcome the extraordinary diversity of HIV-1, a key outstanding question is which bnAbs, and how many, will be needed to achieve optimal clinical benefit. We assessed the neutralizing activity of 15 bnAbs targeting four distinct epitopes of Env, including the CD4-binding site (CD4bs), the V1/V2-glycan region, the V3-glycan region, and the gp41 membrane proximal external region (MPER), against a panel of 200 acute/early clade C HIV-1 Env pseudoviruses. A mathematical model was developed that predicted neutralization by a subset of experimentally evaluated bnAb combinations with high accuracy. Using this model, we performed a comprehensive and systematic comparison of the predicted neutralizing activity of over 1,600 possible double, triple, and quadruple bnAb combinations. The most promising bnAb combinations were identified based not only on breadth and potency of neutralization, but also other relevant measures, such as the extent of complete neutralization and instantaneous inhibitory potential (IIP). By this set of criteria, triple and quadruple combinations of bnAbs were identified that were significantly more effective than the best double combinations, and further improved the probability of having multiple bnAbs simultaneously active against a given virus, a requirement that may be critical for countering escape in vivo. These results provide a rationale for advancing bnAb combinations with the best in vitro predictors of success into clinical trials for both the prevention and treatment of HIV-1 infection.
机译:新一代有效的广泛中和的HIV-1抗体(bnAbs)的鉴定引起了人们对其潜在用途的预防和/或治疗HIV-1感染的极大兴趣。为了克服HIV-1的非凡多样性,可能需要结合靶向病毒包膜(Env)上不同表位的bnAb,但一个关键的悬而未决的问题是,需要哪种bnAb以及多少种bnAb才能获得最佳的临床收益。我们评估了15个针对Env四个不同表位的bnAb的中和活性,这些表位包括CD4结合位点(CD4bs),V1 / V2-聚糖区域,V3-聚糖区域和gp41膜近端外部区域(MPER),针对一组200种急性/早期进化枝C HIV-1 Env假病毒。建立了数学模型,该模型可通过一组经过实验评估的高精度bnAb组合预测中和作用。使用该模型,我们对1600多种可能的双重,三重和四重bnAb组合的预期中和活性进行了全面而系统的比较。不仅根据中和的广度和效力,还根据其他相关措施,例如完全中和的程度和瞬时抑制潜能(IIP),确定了最有希望的bnAb组合。通过这套标准,鉴定出三倍和四倍的bnAb组合比最佳的双重组合有效得多,并且进一步提高了同时具有多种bnAb对抗给定病毒活性的可能性,这对于对抗逃逸可能是至关重要的体内。这些结果为将bnAb组合与成功的最佳体外预测因子推向临床试验提供了理论依据,以预防和治疗HIV-1感染。

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