A29L 蛋白特异性单克隆抗体 A-A29L_MPoxV 在猴痘诊断中的应用

Pub Date : 2023-12-01 DOI:10.3103/s0891416823040067
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引用次数: 0

摘要

摘要 自 2022 年以来,猴痘病毒(MPox)引起的疾病不断蔓延,这表明制定应对措施迫在眉睫。现代猴痘临床实验室诊断方法的发展为此做出了贡献。酶联免疫吸附试验(ELISA)是开发诊断工具的一个方便、灵敏的平台。使用基于单克隆抗体(MAbs)的酶联免疫吸附试验(ELISA)试剂盒检测 MPox 抗原具有分析时间短、样品制备要求低的优点。我们开发并保存了两株能产生重组蛋白的大肠杆菌。用含有 MPox 独特抗原序列的 AgPOX 蛋白对小鼠进行免疫。用于选择 MAb 生产者的 Trx + A29 蛋白包含原始氨基酸序列 A29L。通过酶联免疫吸附试验(ELISA)检测,Trx 蛋白与变种病毒和疫苗病毒的原生制剂之间不存在抗体交叉。免疫小鼠脾细胞杂交的结果是获得了 MAb 生产者。根据三种特异性 MPox 抗原和三种非特异性 MPox 抗原的 ELISA 检测结果,选出了 15 个 MAb 生产杂交瘤。根据生产率标准,选出了三个杂交瘤进行保存。测试了利用其 MAbs 检测不同浓度的本地 MPox 抗原的可能性,并确定了方法的灵敏度。三个杂交瘤的 MAbs a-A29L_MPoxV 检测到了浓度为 102 PFU/mL 的本地 MPox 抗原。在选择分析条件时,该方法的灵敏度可能会更高。基于标记的 MAbs a-A29L_MPoxV,有可能开发出一种灵敏而特异的两步间接 ELISA 试剂盒,用于 MPox 的免疫诊断。
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Application of A29L Protein Specific Monoclonal Antibodies A-A29L_MPoxV for Monkeypox Diagnosis

Abstract

The spread of the disease caused by monkeypox virus (MPox) since 2022 has shown the urgency of developing countermeasures. The development of modern methods of clinical laboratory diagnostics of MPox contributes to this. Enzyme-linked immunosorbent assay (ELISA) is an accessible and sensitive platform for developing diagnostic tools. Detection of MPox antigens using ELISA kits based on monoclonal antibodies (MAbs) is promising due to the quick time of analysis and minimal requirements for sample preparation. We have developed and deposited two strains of Escherichia coli that produce recombinant proteins. Mice were immunized with the AgPOX protein, which contains unique antigenic sequences of MPox. The Trx + A29 protein for selecting MAb producers includes the original amino acid sequence A29L. The absence of antibody crossover to Trx protein and native preparations of variola virus and vaccinia virus tested by ELISA. As a result of hybridization of splenocytes from immunized mice, MAb producers were obtained. Fifteen MAb-producing hybridomas were selected based on ELISA results with three specific MPox antigens and three nonspecific ones. Three hybridomas were selected for deposit according to the productivity criteria. The possibility of detection by means of its MAbs of the native MPox antigen at various concentrations was tested and method sensitivity was determined. The MAbs a-A29L_MPoxV of three hybridomas detected the native antigen MPox at a concentration of 102 PFU/mL. It is likely that the method is even more sensitive when selecting analysis conditions. Based on labeled MAbs a-A29L_MPoxV, it is possible to develop a sensitive and specific indirect two-step ELISA kit for immunodiagnostics of MPox.

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