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首页> 外文期刊>The Veterinary Journal >Antibody profiling of canine IgG responses to the OspC protein of the Lyme disease spirochetes supports a multivalent approach in vaccine and diagnostic assay development
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Antibody profiling of canine IgG responses to the OspC protein of the Lyme disease spirochetes supports a multivalent approach in vaccine and diagnostic assay development

机译:犬对莱姆病螺旋体OspC蛋白的IgG反应的抗体谱分析支持疫苗和诊断分析开发中的多价方法

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OspC performs essential functions during the enzootic cycle of the Lyme disease (LD) spirochetes. In this study, the specificity of antibody (Ab) responses to OspC was profiled to define the antigenic determinants during infection and after vaccination. Several OspC variants or 'types' were screened with serum from SNAP4Dx C6 positive dogs and with serum from rabbits hyperimmunized with OspC proteins. The OspC type-specific nature of the Ab response revealed that variable domains of OspC are immunodominant during infection and upon vaccination. To assess the potential of OspC to elicit Ab in the context of a bacterin vaccine, OspC production in strains cultivated in vitro was assessed. Immunoblot and indirect immunofluorescent antibody analyses demonstrated that production is low and that only a subset of cells actively produces OspC in vitro, raising questions about the potential of bacterin vaccines to stimulate significant anti-OspC Ab responses. The specificity of the OspC Ab response in experimentally infected mice over time was assessed to determine if domains shielded in the OspC homodimer become accessible and stimulate Ab production as infection progresses. The results demonstrate that the OspC Ab response remains focused on surface exposed variable regions of the protein throughout infection. In contrast to some earlier studies, it is concluded that conserved domains of OspC, including the C7 or C10 domain, do not elicit significant Ab responses during infection or upon vaccination. Collectively, the results indicate that OspC diversity must be considered in vaccine design and in the interpretation of diagnostic assays that employ OspC as a diagnostic antigen. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:OspC在莱姆病(LD)螺旋体的生化周期中执行基本功能。在这项研究中,针对OspC的抗体(Ab)反应特异性进行了分析,以定义感染期间和疫苗接种后的抗原决定簇。用SNAP4Dx C6阳性狗的血清和用OspC蛋白进行超免疫的兔子的血清筛选了几种OspC变体或“类型”。 Ab反应的OspC类型特异性性质表明,OspC的可变域在感染过程中和接种疫苗后具有免疫优势。为了评估在细菌疫苗的情况下OspC引发Ab的潜力,评估了体外培养菌株中OspC的产生。免疫印迹和间接免疫荧光抗体分析表明,产量较低,只有一部分细胞在体外能主动产生OspC,这引发了有关细菌疫苗刺激重大抗OspC Ab反应的潜力的疑问。评估了随时间推移在实验感染的小鼠中OspC Ab反应的特异性,以确定OspC同型二聚体中被保护的结构域是否可访问并随着感染的进行刺激Ab的产生。结果表明,在整个感染过程中,OspC Ab反应始终集中在蛋白质表面暴露的可变区。与某些较早的研究相反,得出的结论是,OspC的保守结构域,包括C7或C10结构域,在感染期间或接种疫苗时不会引起明显的Ab反应。总体而言,结果表明在疫苗设计和采用OspC作为诊断抗原的诊断测定方法的解释中必须考虑OspC多样性。 (C)2016作者。由Elsevier Ltd.发布

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