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用于同时检测反刍动物中抗克里米亚-刚果出血热病毒核衣壳蛋白和糖蛋白抗体的多重检测法

Multiplex Assay for Simultaneous Detection of Antibodies against Crimean-Congo Hemorrhagic Fever Virus Nucleocapsid Protein and Glycoproteins in Ruminants.

作者信息

Hoste Alexis C R, Djadjovski Igor, Jiménez-Clavero Miguel Ángel, Rueda Paloma, Barr John N, Sastre Patricia

机构信息

Eurofins-Inmunología y Genética Aplicada S.A. (Eurofins-INGENASA S.A.), Madrid, Spain.

School of Molecular and Cellular Biology, University of Leeds, Leeds, United Kingdom.

出版信息

Microbiol Spectr. 2023 Feb 23;11(2):e0260022. doi: 10.1128/spectrum.02600-22.

Abstract

Crimean-Congo hemorrhagic fever virus (CCHFV) is a widespread tick-borne zoonotic virus that causes Crimean-Congo hemorrhagic fever (CCHF). CCHF is asymptomatic in infected animals but can develop into severe illness in humans, with high case-fatality rates. Due to complex environmental and socio-economic factors, the distribution of CCHFV vectors is changing, leading to disease occurrence in previously unaffected countries. Neither an effective treatment nor a vaccine has been developed against CCHFV; thus, surveillance programs are essential to limit and control the spread of the virus. Furthermore, the WHO highlighted the need of assays that can cover a range of CCHFV antigenic targets, DIVA (differentiating infected from vaccinated animals) assays, or assays for future vaccine evaluation. Here, we developed a multiplex assay, based on a suspension microarray, able to detect specific antibodies in ruminants to three recombinantly produced CCHFV proteins: the nucleocapsid (N) protein and two glycoproteins, G ectodomain (Ge), and GP38. This triplex assay was used to assess the antibody response in naturally infected animals. Out of the 29 positive field sera to the N protein, 40% showed antibodies against Ge or GP38, with 11 out of these 12 samples being positive to both glycoproteins. To determine the diagnostic specificity of the test, a total of 147 sera from Spanish farms free of CCHFV were included in the study. This multiplex assay could be useful to detect antibodies to different proteins of CCHFV as vaccine target candidates and to study the immune response to CCHFV in infected animals and for surveillance programs to prevent the further spread of the virus. Crimean-Congo hemorrhagic fever virus (CCHFV) causes Crimean-Congo hemorrhagic fever, which is one of the most important tick-borne viral diseases of humans and has recently been found in previously unaffected countries such as Spain. The disease is asymptomatic in infected animals but can develop into severe illness in humans. As neither an effective treatment nor a vaccine has been developed against CCHFV, surveillance programs are essential to limit and control the spread of the virus. In this study, a multiplex assay detecting antibodies against different CCHFV antigens in a single sample and independent of the ruminant species has been developed. This assay could be very useful in surveillance studies, to control the spread of CCHFV and prevent future outbreaks, and to better understand the immune response induced by CCHFV.

摘要

克里米亚-刚果出血热病毒(CCHFV)是一种广泛传播的蜱传人畜共患病毒,可引起克里米亚-刚果出血热(CCHF)。CCHF在受感染动物中无症状,但在人类中可发展为严重疾病,病死率很高。由于复杂的环境和社会经济因素,CCHFV媒介的分布正在发生变化,导致以前未受影响的国家出现疾病。目前尚未研发出针对CCHFV的有效治疗方法或疫苗;因此,监测计划对于限制和控制病毒传播至关重要。此外,世界卫生组织强调需要能够覆盖一系列CCHFV抗原靶点的检测方法、鉴别感染动物与接种疫苗动物的检测方法(DIVA)或用于未来疫苗评估的检测方法。在此,我们基于悬浮微阵列开发了一种多重检测方法,能够检测反刍动物中针对三种重组产生的CCHFV蛋白的特异性抗体:核衣壳(N)蛋白以及两种糖蛋白,即G胞外域(Ge)和GP38。这种三重检测方法用于评估自然感染动物的抗体反应。在29份针对N蛋白呈阳性的现场血清中,40%显示出针对Ge或GP38的抗体,这12份样本中有11份对两种糖蛋白均呈阳性。为了确定该检测方法的诊断特异性,研究中纳入了来自西班牙未感染CCHFV农场的总共147份血清。这种多重检测方法对于检测针对CCHFV不同蛋白的抗体(作为候选疫苗靶点)、研究受感染动物对CCHFV的免疫反应以及用于预防病毒进一步传播的监测计划可能是有用的。克里米亚-刚果出血热病毒(CCHFV)可引起克里米亚-刚果出血热,这是人类最重要的蜱传病毒性疾病之一,最近在西班牙等以前未受影响的国家被发现。该疾病在受感染动物中无症状,但在人类中可发展为严重疾病。由于尚未研发出针对CCHFV的有效治疗方法或疫苗,监测计划对于限制和控制病毒传播至关重要。在本研究中,开发了一种能够在单个样本中检测针对不同CCHFV抗原的抗体且与反刍动物物种无关的多重检测方法。这种检测方法在监测研究、控制CCHFV传播和预防未来疫情爆发以及更好地了解CCHFV诱导的免疫反应方面可能非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f77d/10101078/b4618bded2d2/spectrum.02600-22-f001.jpg

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