Development and evaluation of a test strip for the rapid detection of antibody against equine infectious anemia virus.

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Applied Microbiology and Biotechnology Pub Date : 2024-12-01 Epub Date: 2024-01-08 DOI:10.1007/s00253-023-12980-9
Zenan Zhang, Kui Guo, Xiaoyu Chu, Mingru Liu, Cheng Du, Zhe Hu, Xiaojun Wang
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引用次数: 0

Abstract

Equine infectious anemia (EIA) is a contagious disease of horses caused by the equine infectious anemia virus (EIAV). The clinical signs at the acute phase include intermittent high fever, thrombocytopenia, hemorrhage, edema, and anemia. The clinical signs at chronic and relapsing subclinical levels include emaciation and progressive weakness. Surviving horses become lifelong carriers because of the integration of the viral genome into that of the host, and these horses can produce and transmit the virus to other animals. This increases the difficulty of imposing practical control measures to prevent epidemics of this disease. Serological tests measuring the antibodies in equine sera are considered to be a reliable tool for the long-term monitoring of EIA. However, the standard serological tests for EIV either have low sensitivity (e.g., agar gel immunodiffusion test, AGID) or are time consuming to perform (e.g., ELISA and western blotting). The development of a rapid and simple method for detecting the disease is therefore critical to control the spread of EIA. In this study, we designed and developed a colloidal gold immunochromatographic (GICG) test strip to detect antibodies against EIAV based on the double-antigen sandwich. Both the p26 and gp45 proteins were used as the capture antigens, which may help to improve the positive detection rate of the strip. We found that the sensitivity of the test strip was 8 to 16 times higher than those of two commercially available ELISA tests and 128 to 256 times higher than AGID, but 8 to 16 times lower than that of western blotting. The strip has good specificity and stability. When serum samples from experimental horses immunized with the attenuated EIAV vaccine (n = 31) were tested, the results of the test strip showed 100% coincidence with those from NECVB-cELISA and 70.97% with AGID. When testing clinical serum samples (n = 1014), the test strip surprisingly provided greater sensitivity and a higher number of "true positive" results than other techniques. Therefore, we believe that the GICG test strip has demonstrated great potential in the field trials as a simple and effective tool for the detection of antibodies against EIAV. KEY POINTS: • A colloidal gold immunochromatographic (GICG) fast test strip was developed with good specificity, sensitivity, stability, and repeatability • The test strip can be used in point-of-care testing for the primary screening of EIAV antibodies • Both the p26 and gp45 proteins were used as the capture antigens, giving a high positive detection rate in the testing of experimentally infected animal and field samples.

Abstract Image

开发和评估用于快速检测马传染性贫血病毒抗体的试纸。
马传染性贫血病(EIA)是由马传染性贫血病毒(EIAV)引起的一种马传染病。急性期的临床症状包括间歇性高热、血小板减少、出血、水肿和贫血。慢性和复发性亚临床阶段的临床症状包括消瘦和进行性虚弱。由于病毒基因组与宿主基因组整合,存活下来的马匹会成为终生携带者,这些马匹会产生病毒并传播给其他动物。这就增加了采取切实可行的控制措施防止该疾病流行的难度。测量马血清中抗体的血清学检测被认为是长期监测 EIA 的可靠工具。然而,EIV 的标准血清学检测要么灵敏度低(如琼脂凝胶免疫扩散试验,AGID),要么操作耗时(如 ELISA 和 Western 印迹)。因此,开发一种快速简便的检测方法对于控制 EIA 的传播至关重要。在这项研究中,我们设计并开发了一种胶体金免疫层析(GICG)试纸条,用于检测基于双抗原夹心的EIAV抗体。p26 和 gp45 蛋白都被用作捕获抗原,这有助于提高试纸条的阳性检测率。我们发现,该试纸的灵敏度比两种市售的酶联免疫吸附试验高 8 至 16 倍,比 AGID 高 128 至 256 倍,但比 Western 印迹法低 8 至 16 倍。该试剂条具有良好的特异性和稳定性。在对接种了 EIAV 减毒疫苗的实验马血清样本(n = 31)进行检测时,试纸条的检测结果与 NECVB-cELISA 的结果吻合 100%,与 AGID 的结果吻合 70.97%。在检测临床血清样本(n = 1014)时,试纸的灵敏度和 "真阳性 "结果的数量竟然高于其他技术。因此,我们认为 GICG 试纸作为一种简单有效的检测 EIAV 抗体的工具,在现场试验中表现出了巨大的潜力。要点- 开发了一种胶体金免疫层析(GICG)快速检测试纸条,具有良好的特异性、灵敏度、稳定性和重复性 - 该试纸条可用于 EIAV 抗体初筛的床旁检测 - p26 和 gp45 蛋白都被用作捕获抗原,在检测实验感染动物和现场样本时具有较高的阳性检测率。
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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