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首页> 外文期刊>Emerging microbes & infections. >Contribution of Fc-dependent cell-mediated activity of a vestigial esterase-targeting antibody against H5N6 virus infection
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Contribution of Fc-dependent cell-mediated activity of a vestigial esterase-targeting antibody against H5N6 virus infection

机译:Fc依赖性细胞介导的患者酯酶靶向抗体的贡献对H5N6病毒感染的抗体的活性

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div class="hlFld-Abstract test" The highly pathogenic avian influenza A (H5N6) virus has caused sporadic human infections with a high case fatality rate. Due to the continuous evolution of this virus subtype and its ability to transmit to humans, there is an urgent need to develop effective antiviral therapeutics. In this study, a murine monoclonal antibody 9F4 was shown to display broad binding affinity against H5Nx viruses. Furthermore, 9F4 can neutralize H5N6 pseudotyped particles and prevent entry into host cells. Additionally, ADCC/ADCP deficient L234A, L235A (LALA) and CDC deficient K322A mutants were generated and displayed comparable binding affinity and neutralizing activity as wild type 9F4 (9F4-WT). Notably, 9F4-WT, 9F4-LALA and 9F4-K322A exhibit in vivo protective efficacies against H5N6 infections in that they were able to reduce viral loads in mice. However, only 9F4-WT and 9F4-K322A but not 9F4-LALA were able to reduce viral pathogenesis in H5N6 challenged mice. Furthermore, depletion of phagocytic cells in mice lungs nullifies 9F4-WT's protection against H5N6 infections, suggesting a crucial role of the host's immune cells in 9F4 antiviral activity. Collectively, these findings reveal the importance of ADCC/ADCP function for 9F4-WT protection against HPAIV H5N6 and demonstrate the potential of 9F4 to confer protection against the reassortant H5-subtype HPAIVs.
机译:Div类=“HLFLD-摘要测试”>高致病性禽流感A(H5N6)病毒引起了散发性人类感染,具有高病例的死亡率。由于该病毒亚型的连续演变及其传播给人类的能力,迫切需要开发有效的抗病毒治疗方法。在该研究中,显示鼠单克隆抗体9F4对H5NX病毒显示宽的结合亲和力。此外,9F4可以中和H5N6假型颗粒并防止进入宿主细胞。另外,ADCC / ADCP缺陷的L234A,L235A(LALA)和CDC缺陷K322A突变体被产生并显示与野生型9F4(9F4 -WT)相当的结合亲和力和中和活性。值得注意的是,9F4-WT,9F4-LALA和9F4-K322A表现出体内保护性效果,免受H5N6感染的影响,因为它们能够减少小鼠中的病毒载量。然而,只有9F4-WT和9F4-K322A但不是9F4-LALA能够在H5N6攻击小鼠中降低病毒性发病机制。此外,小鼠肺中的吞噬细胞的耗尽无效9F4-WT对H5N6感染的保护,表明宿主的免疫细胞在9F4抗病毒活性中的作用。总的来说,这些发现揭示了ADCC / ADCP功能对HPAIV H5N6的9F4-WT保护的重要性,并证明了9F4的电位赋予重新排列H5-亚型HPAIV。

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