首页> 外文期刊>The Journal of Infectious Diseases >Fully human monoclonal antibody directed to proteolytic cleavage site in severe acute respiratory syndrome (SARS) coronavirus S protein neutralizes the virus in a rhesus macaque SARS model.
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Fully human monoclonal antibody directed to proteolytic cleavage site in severe acute respiratory syndrome (SARS) coronavirus S protein neutralizes the virus in a rhesus macaque SARS model.

机译:针对严重急性呼吸系统综合症(SARS)冠状病毒S蛋白中蛋白水解切割位点的完全人类单克隆抗体,可以在恒河猴SARS模型中中和该病毒。

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BACKGROUND: There is still no effective method to prevent or treat severe acute respiratory syndrome (SARS), which is caused by SARS coronavirus (CoV). In the present study, we evaluated the efficacy of a fully human monoclonal antibody capable of neutralizing SARS-CoV in vitro in a Rhesus macaque model of SARS. METHODS: The antibody 5H10 was obtained by vaccination of KM mice bearing human immunoglobulin genes with Escherichia coli-producing recombinant peptide containing the dominant epitope of the viral spike protein found in convalescent serum samples from patients with SARS. RESULTS: 5H10, which recognized the same epitope that is also a cleavage site critical for the entry of SARS-CoV into host cells, inhibited propagation of the virus and pathological changes found in Rhesus macaques infected with the virus through the nasal route. In addition, we analyzed the mode of action of 5H10, and the results suggested that 5H10 inhibited fusion between the virus envelope and host cell membrane. 5H10 has potential for use in prevention and treatment of SARS if it reemerges. CONCLUSIONS: This study represents a platform to produce fully human antibodies against emerging infectious diseases in a timely and safe manner.
机译:背景:目前尚没有有效的方法来预防或治疗由SARS冠状病毒(CoV)引起的严重急性呼吸道综合症(SARS)。在本研究中,我们评估了能够在SARS的猕猴模型中体外中和SARS-CoV的完全人单克隆抗体的功效。方法:抗体5H10是通过用生产大肠杆菌的重组肽疫苗接种的,该小鼠带有人免疫球蛋白基因,该重组肽含有SARS患者恢复期血清样品中病毒突触蛋白的优势表位。结果:5H10可识别相同的表位,该表位也是SARS-CoV进入宿主细胞的关键裂解位点,可抑制病毒的传播以及在经鼻途径感染了该病毒的猕猴中发现的病理变化。此外,我们分析了5H10的作用方式,结果表明5H10抑制了病毒包膜和宿主细胞膜之间的融合。如果重新出现,5H10有潜力用于防治SARS。结论:本研究代表了一个平台,该平台可以及时安全地产生针对新兴传染病的完全人类抗体。

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