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Immunogenicity characterization of genetically fused or chemically conjugated heat-stable toxin toxoids of enterotoxigenic Escherichia coli in mice and pigs

机译:遗传毒性或化学缀合的肠毒素大肠杆菌的热稳定毒素类毒素在小鼠和猪中的免疫原性表征

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摘要

Enterotoxigenic (ETEC) producing type Ib heat-stable toxin (STa) are a main cause of children's diarrhea and travelers’ diarrhea, thus STa needs to be targeted in ETEC vaccine development. However, because this 19-amino acid STa is poorly immunogenic, attempts to genetically fuse or chemically couple it to carrier proteins have been made to enhance STa immunogenicity. In this study, we selected one genetic fusion and one chemical conjugate to comparatively evaluate STa immunogenicity. The genetic fusion is 3xSTa -mnLT carrying three toxoid (STa ) genetically fused to a double mutant LT monomer (mnLT ); the chemical conjugate is BSA-STa , which has toxoid STa chemically coupled to bovine serum albumin (BSA). We immunized mice with the STa toxoid fusion and chemical conjugates, and examined antibody responses. Furthermore, we immunized pigs and evaluated derived antibodies for efficacy to passively provide protection against ETEC diarrhea using a piglet model. Data showed that mice subcutaneously immunized with BSA-STa or 3xSTa -mnLT developed a strong anti-STa antibody, and the induced antibodies exhibited equivalent toxin-neutralizing activities. Pigs immunized with 3xSTa -mnLT or BSA-STa developed similar levels of anti-STa antibodies; piglets with passively acquired antibodies induced by the genetic fusion appeared better protected against STa + ETEC. Results from the current study indicate that the fusion and conjugate approaches are viable options for facilitating STa immunogenicity and developing ETEC vaccines.
机译:产生产肠毒素(ETEC)的Ib型热稳定毒素(STa)是儿童腹泻和旅行者腹泻的主要原因,因此STa需要成为ETEC疫苗开发的目标。然而,由于该19个氨基酸的STa的免疫原性较差,因此已经尝试将其遗传融合或化学偶联至载体蛋白以增强STa的免疫原性。在这项研究中,我们选择了一种基因融合和一种化学缀合物来比较评估STa的免疫原性。遗传融合是3xSTa -mnLT携带的3个类毒素(STa)在基因上与双突变LT单体(mnLT)融合;化学结合物是BSA-STa,其类毒素STa与牛血清白蛋白(BSA)化学偶联。我们用STa类毒素融合蛋白和化学偶联物免疫小鼠,并检查了抗体反应。此外,我们对猪进行了免疫,并评估了衍生抗体的有效性,从而可以使用小猪模型被动提供针对ETEC腹泻的保护。数据显示,用BSA-STa或3xSTa-mnLT皮下免疫的小鼠产生了强大的抗STa抗体,并且诱导的抗体表现出同等的毒素中和活性。用3xSTa -mnLT或BSA-STa免疫的猪产生了相似水平的抗STa抗体。遗传融合诱导的被动获得抗体的仔猪对STa + ETEC的保护作用更好。当前研究的结果表明,融合和偶联方法是促进STa免疫原性和开发ETEC疫苗的可行选择。

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