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Porcine parvovirus VP1/VP2 on a time series epitope mapping: exploring the effects of high hydrostatic pressure on the immune recognition of antigens

机译:猪细小病毒VP1 / VP2在时间序列表位作图:探讨高静水压力对抗原免疫识别的影响

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摘要

Porcine parvovirus (PPV) is a DNA virus that causes reproductive failure in gilts and sows, resulting in embryonic and fetal losses worldwide. Epitope mapping of PPV is important for developing new vaccines. In this study, we used spot synthesis analysis for epitope mapping of the capsid proteins of PPV (NADL-2 strain) and correlated the findings with predictive data from immunoinformatics. The virus was exposed to three conditions prior to inoculation in pigs: native (untreated), high hydrostatic pressure (350 MPa for 1 h) at room temperature and high hydrostatic pressure (350 MPa for 1 h) at − 18 °C, and was compared with a commercial vaccine produced using inactivated PPV. The screening of serum samples detected 44 positive spots corresponding to 20 antigenic sites. Each type of inoculated antigen elicited a distinct epitope set. In silico prediction located linear and discontinuous epitopes in B cells that coincided with several epitopes detected in spot synthesis of sera from pigs that received different preparations of inoculum. The conditions tested elicited antibodies against the VP1/VP2 antigen that differed in relation to the response time and the profile of structurally available regions that were recognized.Electronic supplementary materialThe online version of this article (10.1186/s12985-019-1165-1) contains supplementary material, which is available to authorized users.
机译:猪细小病毒(PPV)是一种DNA病毒,会导致母猪和母猪繁殖衰竭,从而导致全世界范围内的胚胎和胎儿损失。 PPV的表位作图对于开发新疫苗很重要。在这项研究中,我们将斑点合成分析用于PPV(NADL-2株)衣壳蛋白的表位作图,并将结果与​​免疫信息学的预测数据相关联。在猪中接种该病毒之前,先使其暴露于三种条件:天然(未经处理),室温下的高静水压(350 MPa,1 h)和−18°C的高静水压(350 MPa,1 h),与使用灭活的PPV生产的商业疫苗相比。血清样品的筛选检测到44个阳性点,对应于20个抗原位点。每种类型的接种抗原都会引发不同的表位。在计算机模拟中,B细胞中线性和不连续的表位与在接受不同接种物的猪的血清的点合成中检测到的几个表位一致。测试的条件引发了针对VP1 / VP2抗原的抗体,这些抗体的响应时间和已识别的结构可用区域的轮廓有所不同。电子补充材料本文的在线版本(10.1186 / s12985-019-1165-1)包含补充材料,授权用户可以使用。

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