Neutralization diversity of HIV-1 Indian subtype C envelopes obtained from cross sectional and followed up individuals against broadly neutralizing monoclonal antibodies having distinct gp120 specificities.

IF 2.7 3区 医学 Q3 VIROLOGY
Ranajoy Mullick, Jyoti Sutar, Nitin Hingankar, Suprit Deshpande, Madhuri Thakar, Seema Sahay, Rajesh P Ringe, Sampurna Mukhopadhyay, Ajit Patil, Shubhangi Bichare, Kailapuri G Murugavel, Aylur K Srikrishnan, Rajat Goyal, Devin Sok, Jayanta Bhattacharya
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引用次数: 0

Abstract

Background: The potential use of the broadly neutralizing monoclonal antibodies (bnAbs) towards prophylaxis and treatment to HIV-1 is currently being explored. While a number of promising bnAbs have been discovered and a few of them have progressed towards clinical development, their extent of neutralization coverage with respect to global HIV-1 variants given the existence of genetically distinct subtypes and recombinants circulating globally is not clearly known. In the present study, we examined the variation in the neutralization susceptibility of pseudoviruses expressing 71 full length primary HIV-1 subtype C envs obtained from limited cross-sectional individuals over different time points against four bnAbs that target gp120 with distinct specificities: VRC01, CAP256-VRC26.25, PGDM1400 and PGT121.

Results: We found significant variations in the susceptibility of Indian clade C to these four bnAbs. These variations were found to be distinct to that observed in African subtype C based on the existing datasets and concordant with their sequence diversity. Trend analysis indicated an increasing neutralization resistance observed over time with CAP25-VRC26.25, PGDM1400 and PGT121 when tested on pseudoviruses expressing envs obtained from 1999 to 2016. However, inconsistent trend in neutralization susceptibility was observed, when pseudoviruses expressing envs obtained from three followed up individuals were examined. Finally, through predictive analysis of the 98 Indian subtype C including those assessed in the present study by employing additive model implemented in CombiNAber ( http://www.hiv.lanl.gov ), we observed two possibilities where combinations of three bnAbs (VRC01/CAP56-VRC26.25/PGT121 and PGDM1400/CAP256-VRC26.25/PGT121) could achieve near 100% neutralization coverage.

Conclusions: Our findings not only indicate disparate intra-clade C genetic vis-à-vis neutralization diversities but also warrant the need for more comprehensive study using additional isolates towards comparing inter and intra-clade neutralization diversities which will be necessary for selecting the bnAb combinations suitable for optimal coverage of the region-specific HIV-1 circulating subtypes. Expanding these efforts is imperative for designing efficacious bnAb based intervention strategies for India as well as subtype C in general.

Abstract Image

Abstract Image

Abstract Image

从横断面个体和随访个体中获得的印度 C 亚型 HIV-1 包膜与具有不同 gp120 特异性的广谱中和单克隆抗体的中和多样性。
背景:目前正在探索使用广谱中和单克隆抗体(bnAbs)预防和治疗 HIV-1 的可能性。虽然已经发现了许多有前景的 bnAbs,其中一些已进入临床开发阶段,但由于存在基因不同的亚型和全球流行的重组株,它们对全球 HIV-1 变异株的中和覆盖程度尚不清楚。在本研究中,我们检测了在不同时间点从有限的横断面个体中获得的表达 71 个全长原代 HIV-1 C 亚型 envs 的假病毒对四种针对 gp120 的 bnAbs 中和敏感性的变化,这四种 bnAbs 具有不同的特异性:结果:结果:我们发现印度支系 C 对这四种 bnAbs 的敏感性存在明显差异。根据现有数据集发现,这些变化与非洲亚型 C 中观察到的变化不同,并与它们的序列多样性相一致。趋势分析表明,在对 1999 年至 2016 年获得的表达 envs 的假病毒进行测试时,观察到 CAP25-VRC26.25、PGDM1400 和 PGT121 的中和抗性随着时间的推移而增加。然而,在检测三个随访个体获得的表达 envs 的假病毒时,观察到中和敏感性的趋势并不一致。最后,通过采用 CombiNAber ( http://www.hiv.lanl.gov ) 中实施的加和模型对 98 种印度 C 亚型(包括本研究中评估的那些亚型)进行预测分析,我们观察到三种 bnAbs(VRC01/CAP56-VRC26.25/PGT121 和 PGDM1400/CAP256-VRC26.25/PGT121)组合可实现接近 100% 中和覆盖率的两种可能性:我们的研究结果不仅表明了 C 支系内基因与中和多样性的差异,而且还证明有必要使用更多的分离株进行更全面的研究,以比较支系间和支系内的中和多样性。要为印度和整个 C 亚型设计基于 bnAb 的有效干预策略,就必须扩大这些工作的范围。
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来源期刊
Retrovirology
Retrovirology 医学-病毒学
CiteScore
5.80
自引率
3.00%
发文量
24
审稿时长
>0 weeks
期刊介绍: Retrovirology is an open access, online journal that publishes stringently peer-reviewed, high-impact articles on host-pathogen interactions, fundamental mechanisms of replication, immune defenses, animal models, and clinical science relating to retroviruses. Retroviruses are pleiotropically found in animals. Well-described examples include avian, murine and primate retroviruses. Two human retroviruses are especially important pathogens. These are the human immunodeficiency virus, HIV, and the human T-cell leukemia virus, HTLV. HIV causes AIDS while HTLV-1 is the etiological agent for adult T-cell leukemia and HTLV-1-associated myelopathy/tropical spastic paraparesis. Retrovirology aims to cover comprehensively all aspects of human and animal retrovirus research.
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