Melendez Jennifer A, Sun Haiyan, Bonner James, Chen Qiang
Biodesign Institute, Arizona State University, Tempe, AZ, United States.
School of Life Sciences, Arizona State University, Tempe, AZ, United States.
Front Plant Sci. 2024 Nov 1;15:1481452. doi: 10.3389/fpls.2024.1481452. eCollection 2024.
In 2022, the global outbreak of monkeypox virus (MPXV) with increased human-to-human transmission triggered urgent public health interventions. Plant-derived monoclonal antibodies (mAbs) are being explored as potential therapeutic strategies due to their diverse mechanisms of antiviral activity. MPXV produces two key infectious particles: the mature virion (MV) and the extracellular enveloped virion (EV), both essential for infection and spread. Effective therapies must target both to halt replication and transmission. Our prior research demonstrated the development of a potent neutralizing mAb against MPXV MV. This study focuses on developing a plant-derived mAb targeting MPXV EV, which is critical for viral dissemination within the host and generally resistant to antibody neutralization. Our findings reveal that the mAb (H2) can be robustly produced in plants via transient expression. The plant-made H2 mAb effectively targets MPXV EV by binding specifically to the A35 MPXV antigen. Importantly, H2 mAb shows notable neutralizing activity against the infectious MPXV EV particle. This investigation is the first to report the development of a plant-derived anti-EV mAb for MPXV prevention and treatment, as well as the first demonstration of anti-MPXV EV activity by an mAb across any production platform. It highlights the potential of plant-produced mAbs as therapeutics for emerging infectious diseases, including the MPXV outbreak.
2022年,猴痘病毒(MPXV)在全球爆发,人际传播增加,引发了紧急的公共卫生干预措施。由于植物源单克隆抗体(mAb)具有多样的抗病毒活性机制,因此正被探索作为潜在的治疗策略。MPXV产生两种关键的感染性颗粒:成熟病毒粒子(MV)和细胞外被膜病毒粒子(EV),二者对于感染和传播均至关重要。有效的治疗方法必须针对这两者以阻止病毒复制和传播。我们之前的研究展示了一种针对MPXV MV的强效中和单克隆抗体的研发。本研究聚焦于开发一种靶向MPXV EV的植物源单克隆抗体,MPXV EV对于病毒在宿主体内的传播至关重要,并且通常对抗体中和具有抗性。我们的研究结果表明,该单克隆抗体(H2)可通过瞬时表达在植物中大量生产。植物制备的H2单克隆抗体通过特异性结合A35 MPXV抗原有效地靶向MPXV EV。重要的是,H2单克隆抗体对感染性MPXV EV颗粒显示出显著的中和活性。本研究首次报道了用于预防和治疗MPXV的植物源抗EV单克隆抗体的研发,以及在任何生产平台上通过单克隆抗体实现的抗MPXV EV活性的首次证明。它凸显了植物生产的单克隆抗体作为包括MPXV疫情在内的新兴传染病治疗方法的潜力。