猪细小病毒病毒样颗粒的表达和自组装及其在抗体检测中的应用。

Y Li, Q Wang, W Yue, X Li, Y Chen, Y Gao
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引用次数: 0

摘要

猪细小病毒(PPV)是繁殖猪疾病的主要病原体。养猪业面临着重大的经济和动物疫病威胁,因此,找到一种可靠、快速和实用的方法来检测它至关重要。本研究在大肠杆菌(E. coli)表达系统中表达了重组 PPV VP2 蛋白。电子显微镜(TEM)、Western 印迹和血凝(HA)检测表明,重组 VP2 蛋白在表达和纯化后成功组装成病毒样颗粒(VLPs)。这些 VLPs 的结构与真正的 PPV 病毒相似,并具有 HA 活性。免疫小鼠后,这些 VLPs 能诱导高水平的 PPV 特异性抗体滴度,这表明 VLPs 可作为潜在的候选抗原。与 HI 检测法相比,基于 PPV VLPs 的 ELISA 检测法显示出较高的灵敏度(99%)、特异性(93.0%)和一致率(98.3%);与商业 ELISA 试剂盒相比,该 ELISA 检测法的一致率为 97.5%。板内的变异系数(CV)为 10%,ELISA 板之间的变异系数为 15%。根据交叉反应测定,与其他病毒性疾病血清相比,该技术具有 PPV 特异性。用 PPV VLP 间接-ELISA 检测猪用 PPV 灭活疫苗的结果表明,不同样本来源的 PPV 阳性率从 88.2% 到 89.6% 不等。我们的结果表明,这种 ELISA 技术快速、准确、可重复,可用于猪 PPV 抗体的广泛血清学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression and self-assembly of virus-like particles from porcine parvovirus and its application in antibody detection.

Porcine parvovirus (PPV) is a major causative agent in reproductive pig disease. The swine industry faces a significant economic and epizootic threat; thus, finding a reliable, quick, and practical way to detect it is essential. In this investigation, recombinant PPV VP2 protein was expressed in the Escherichia coli ( E. coli) expression systems. As shown by electron microscopy (TEM), Western blot, and hemagglutination (HA) assays, the recombinant VP2 protein was successfully assembled into virus-like particles (VLPs) after being expressed and purified. These VLPs had a structure that was similar to that of real PPV viruses and also exhibited HA activity. These VLPs induced high levels of PPV-specific antibody titers in mice after immunization, indicating that the VLPs may be beneficial as potential candidate antigens. VLPs were used as the coating antigens for the VLP ELISA, and the PPV VLPs-based ELISA displayed a high sensitivity (99%), specificity (93.0%) and agreement rate (98.3%) compared to HI assay, and the agreement rate of this ELISA was 97.5% compared to a commercial ELISA kit. Within a plate, the coefficient of variation (CV) was 10%, and between ELISA plates, the CV was 15%. According to a cross-reactivity assay, the technique was PPV-specific in contrast to other viral illness sera. The PPV VLP indirect-ELISA test for PPV detection in pigs with an inactivated vaccine showed that the PPV-positive rate varied among different sample sources from 88.2 to 89.6%. Our results indicate that this ELISA technique was quick, accurate, and repeatable and may be used for extensive serological research on PPV antibodies in pigs.

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