首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Analysis of the role of antibody-dependent cellular cytotoxic antibody activity in murine neonatal herpes simplex virus infection with antibodies to synthetic peptides of glycoprotein D and monoclonal antibodies to glycoprotein B.
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Analysis of the role of antibody-dependent cellular cytotoxic antibody activity in murine neonatal herpes simplex virus infection with antibodies to synthetic peptides of glycoprotein D and monoclonal antibodies to glycoprotein B.

机译:用糖蛋白D合成肽抗体和糖蛋白B单克隆抗体对鼠源性单纯疱疹病毒感染中抗体依赖性细胞毒性抗体活性的作用进行分析。

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摘要

The role of antibody in neonatal herpes simplex virus (HSV) infection remains controversial. A battery of well-characterized monoclonal antibodies to HSV glycoprotein B (gB), and polyclonal antibodies against synthetic peptides of predicted epitopes of HSV glycoprotein D (gD) were used to determine in vitro functional activity and association with protection against lethal infection in a murine model of neonatal HSV disease. Antiviral neutralization activity of HSV was not associated with antibody-dependent cellular cytotoxicity (ADCC) activity to HSV-infected cells in vitro. In a model of high dose challenge (10(4) PFU), protection was not afforded by any antibody alone, but was by antibody plus human mononuclear cells, and highly associated with ADCC functional activity (P less than 0.001). In a low dose challenge model, neutralizing activity of antibody alone was associated with protection in vivo (P less than 0.001). Of the nine neutralizing epitopes of gD in vitro, eight were predicted surface regions. Four of the five epitopic sites of gD (2-21, 267-276, 288-297, and 303-312) that were determined to be important targets of ADCC and in vivo protection were also predicted to be surface regions. The only exception was the antiserum to region 52-61 which was predicted to be buried and also showed these activities. ADCC as well as neutralizing antibody activity are important in protection against neonatal HSV infection.
机译:抗体在新生儿单纯疱疹病毒(HSV)感染中的作用仍存在争议。一系列针对HSV糖蛋白B(gB)的特征明确的单克隆抗体,以及针对HSV糖蛋白D(gD)预测表位的合成肽的多克隆抗体,用于确定体外功能活性以及与鼠类致死性感染防护的关联新生儿HSV疾病的模型。 HSV的抗病毒中和活​​性与体外对HSV感染的细胞的抗体依赖性细胞毒性(ADCC)活性无关。在高剂量攻击(10(4)PFU)模型中,保护不是单独由任何抗体提供的,而是由抗体加人单核细胞提供的,并且与ADCC功能活性高度相关(P小于0.001)。在低剂量攻击模型中,单独的抗体的中和活性与体内保护相关(P小于0.001)。在体外,九种中和的gD表位中有八种是预测的表面区域。被确定为ADCC和体内保护的重要靶点的gD的五个表位部位中的四个(2-21、267-276、288-297和303-312)也被预测为表面区域。唯一的例外是区域52-61的抗血清被预测为被掩埋并显示出这些活性。 ADCC以及中和抗体的活性对于预防新生儿HSV感染都很重要。

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