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首页> 外文期刊>JAIDS: Journal of acquired immune deficiency syndromes >Monoclonal and Single Domain Antibodies Targeting beta-Integrin Subunits Block Sexual Transmission of HIV-1 in In Vitro and In Vivo Model Systems
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Monoclonal and Single Domain Antibodies Targeting beta-Integrin Subunits Block Sexual Transmission of HIV-1 in In Vitro and In Vivo Model Systems

机译:靶向β-整合素亚基的单克隆和单域抗体在体外和体内模型系统中阻断HIV-1的性传播。

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Background:Poor adherence to prevention regimens for gel-based anti-HIV-1 microbicides has been a major obstacle to more effective pre-exposure prophylaxis. Concern persists that the antiretroviral drug containing microbicides might promote development of antiretroviral resistance.Methods:Using in vitro transwell systems and a humanized mouse model of HIV-1 sexual transmission, we examined, as candidate microbicides, antibodies targeting the heterodimeric leukocyte function-associated antigen 1 (LFA-1), a non-virally encoded protein acquired by the virus that also plays a critical role cell movement across endothelial and epithelial barriers. LFA-1-specific single domain variable regions from alpaca heavy-chain only antibodies (VHH) were identified and evaluated for their ability to inhibit HIV-1 transmission in the in vitro transwell system.Results:Monoclonal antibodies targeting the CD11a and CD18 components of LFA-1 significantly reduced cell-free and cell-associated HIV-1 transmission in the in vitro transwell culture system and prevented virus transmission in the humanized mouse model of vaginal transmission. The broadly neutralizing monoclonal antibody b12 was unable to block transmission of cell-free virus. CD11a-specific VHH were isolated and expressed and the purified variable region protein domains reduced in vitro transepithelial transmission with an efficacy comparable with that of the CD11a monoclonal antibody.Conclusions:Targeting integrins acquired by HIV-1 during budding and which are critical to interactions between epithelial cells and lymphocytes can reduce viral movement across epithelial barriers and prevent transmission in a humanized mouse model of sexual transmission. VHH capable of being produced by transformed bacteria can significantly reduce transepithelial virus transmission in in vitro model systems.
机译:背景:对基于凝胶的抗HIV-1杀微生物剂的预防方案依从性差,一直是有效预防暴露前的主要障碍。持续存在的担忧是,含有杀微生物剂的抗逆转录病毒药物可能会促进抗逆转录病毒耐药性的发展。 1(LFA-1)是一种由病毒获得的非病毒编码蛋白,在跨内皮和上皮屏障的细胞移动中也起着关键作用。鉴定了羊驼重链抗体(VHH)的LFA-1特异性单结构域可变区,并评估了其在体外Transwell系统中抑制HIV-1传播的能力。结果:针对CD11a和CD18组分的单克隆抗体LFA-1在体外transwell培养系统中显着减少了无细胞和细胞相关的HIV-1传播,并在人性化的阴道传播小鼠模型中阻止了病毒传播。广泛中和的单克隆抗体b12无法阻止无细胞病毒的传播。分离并表达CD11a特异性VHH,纯化的可变区蛋白结构域减少体外经上皮传递,其功效与CD11a单克隆抗体相当。结论:靶向HIV-1在萌芽过程中获得的整联蛋白,对于整合素之间的相互作用至关重要上皮细胞和淋巴细胞可以减少病毒穿过上皮屏障的运动,并阻止在人性化性传播小鼠模型中的传播。能够由转化细菌产生的VHH在体外模型系统中可以显着减少跨上皮病毒的传播。

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