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Rapid High-Level Production of Functional HIV Broadly Neutralizing Monoclonal Antibodies in Transient Plant Expression Systems

机译:在瞬时植物表达系统中快速高水平生产功能性HIV广泛中和的单克隆抗体

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摘要

Passive immunotherapy using anti-HIV broadly neutralizing monoclonal antibodies (mAbs) has shown promise as an HIV treatment, reducing mother-to-child-transmission (MTCT) of simian/human immunodeficiency virus (SHIV) in non-human primates and decreasing viral rebound in patients who ceased receiving anti-viral drugs. In addition, a cocktail of potent mAbs may be useful as mucosal microbicides and provide an effective therapy for post-exposure prophylaxis. However, even highly neutralizing HIV mAbs used today may lose their effectiveness if resistance occurs, requiring the rapid production of new or engineered mAbs on an ongoing basis in order to counteract the viral resistance or the spread of a certain HIV-1 clade in a particular region or patient. Plant-based expression systems are fast, inexpensive and scalable and are becoming increasingly popular for the production of proteins and monoclonal antibodies. In the present study, Agrobacterium-mediated transient transfection of plants, utilizing two species of Nicotiana, have been tested to rapidly produce high levels of an HIV 89.6PΔ140env and several well-studied anti-HIV neutralizing monoclonal antibodies (b12, 2G12, 2F5, 4E10, m43, VRC01) or a single chain antibody construct (m9), for evaluation in cell-based viral inhibition assays. The protein-A purified plant-derived antibodies were intact, efficiently bound HIV envelope, and were equivalent to, or in one case better than, their counterparts produced in mammalian CHO or HEK-293 cells in both neutralization and antibody dependent viral inhibition assays. These data indicate that transient plant-based transient expression systems are very adaptable and could rapidly generate high levels of newly identified functional recombinant HIV neutralizing antibodies when required. In addition, they warrant detailed cost-benefit analysis of prolonged incubation in plants to further increase mAb production.
机译:使用抗HIV广泛中和性单克隆抗体(mAb)的被动免疫疗法已显示出有望作为HIV治疗,减少非人类灵长类动物中猿猴/人类免疫缺陷病毒(SHIV)的母婴传播(MTCT)并降低病毒反弹停止接受抗病毒药物的患者。另外,有效mAb的混合物可用作粘膜杀微生物剂,并为预防暴露后提供了有效的疗法。但是,即使今天使用的高度中和的HIV单抗也可能在发生抗药性时失去其效力,因此需要持续不断地快速生产新的或工程化的mAb,以抵消病毒抗药性或某些HIV-1进化枝在特定环境中的传播。地区或患者。基于植物的表达系统快速,廉价且可扩展,并且在生产蛋白质和单克隆抗体方面越来越受欢迎。在本研究中,已经测试了利用两种烟草属的农杆菌介导的植物瞬时转染,可快速产生高水平的HIV89.6PΔ140env和几种经过充分研究的抗HIV中和性单克隆抗体(b12、2G12、2F5, 4E10,m43,VRC01)或单链抗体构建体(m9),用于在基于细胞的病毒抑制试验中进行评估。蛋白A纯化的植物来源抗体完整,有效地结合了HIV包膜,并且在中和和抗体依赖性病毒抑制试验中,与在哺乳动物CHO或HEK-293细胞中产生的对应物相同或在某种情况下优于它们。这些数据表明,基于植物的瞬时表达系统非常适应性强,可以在需要时迅速产生高水平的新近鉴定的功能重组HIV中和抗体。此外,他们还需要对长时间在植物中孵育以进一步提高mAb产量进行详细的成本效益分析。

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