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6
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评估荧光微球免疫分析检测裂谷热病毒核衣壳蛋白和糖蛋白抗体。

Evaluation of Fluorescence Microsphere Immunoassay for Detection of Antibodies to Rift Valley Fever Virus Nucleocapsid Protein and Glycoproteins.

机构信息

Department of Diagnostic Medicine and Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, Kansas, USA.

Department of Diagnostic Medicine and Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, Kansas, USA

出版信息

J Clin Microbiol. 2018 May 25;56(6). doi: 10.1128/JCM.01626-17. Print 2018 Jun.

DOI:10.1128/JCM.01626-17
PMID:29563201
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5971554/
Abstract

Rift Valley fever virus (RVFV) is a mosquito-borne, zoonotic virus that infects ruminants, including cattle, sheep, goats, camels, and buffalo. Multiplexing diagnostic assays that can simultaneously detect antibodies against multiple RVFV antigens offer a high-throughput test for disease surveillance and vaccine evaluations. We describe the improvement and evaluation of a previously developed fluorescence microsphere immunoassay (FMIA) for the detection of IgG and IgM antibodies against the RVFV glycoprotein (Gn) and the immunogenic nucleocapsid protein (Np). Well-characterized vaccinated and experimentally infected ruminant sera were used for the evaluation of the assay. Recombinant viral proteins were produced and then coupled to polystyrene magnetic beads for analysis using the Luminex MAGPIX system with xMAP technology. The FMIA was performed in parallel with virus neutralization tests. Our results revealed the highest median fluorescence intensity (MFI) values for the detection of IgG antibodies against RVFV Np, indicating that this antigen would be a good candidate for a screening assay. The Np and Gn targets could differentiate infected animals from animals vaccinated with a candidate subunit vaccine formulation based on the RVFV Gn and Gc proteins. The results presented in this report demonstrate that FMIA provides a rapid and robust serological diagnostic tool for the detection of antibodies against RVFV. The targets developed in this assay provide the basis for the development of a companion diagnostic test for an RVFV Gn/Gc subunit vaccine that is capable of differentiating infected from vaccinated animals (DIVA), as well as a multiplex serodiagnostic assay that can simultaneously screen for several ruminant diseases.

摘要

裂谷热病毒(RVFV)是一种蚊媒传播的人畜共患病病毒,感染反刍动物,包括牛、羊、山羊、骆驼和水牛。能够同时检测针对多种 RVFV 抗原的抗体的多重诊断检测提供了一种高通量的疾病监测和疫苗评估测试。我们描述了对以前开发的荧光微球免疫分析(FMIA)的改进和评估,用于检测针对 RVFV 糖蛋白(Gn)和免疫原性核衣壳蛋白(Np)的 IgG 和 IgM 抗体。经过充分表征的接种和实验感染反刍动物血清用于评估该检测。生产了重组病毒蛋白,然后将其偶联到聚苯乙烯磁性珠上,使用 Luminex MAGPIX 系统和 xMAP 技术进行分析。FMIA 与病毒中和试验同时进行。我们的结果显示,针对 RVFV Np 的 IgG 抗体检测的中位数荧光强度(MFI)值最高,这表明该抗原将是筛选检测的良好候选物。Np 和 Gn 靶标可区分基于 RVFV Gn 和 Gc 蛋白的候选亚单位疫苗制剂接种的动物与感染的动物。本报告中的结果表明,FMIA 提供了一种快速而强大的血清学诊断工具,用于检测针对 RVFV 的抗体。该检测中开发的靶标为 RVFV Gn/Gc 亚单位疫苗的配套诊断测试以及能够同时筛选几种反刍动物疾病的多重血清诊断检测提供了基础。