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Development of an immunochromatographic lateral flow device for rapid diagnosis of Vibrio cholerae O1 serotype Ogawa

机译:用于快速诊断霍乱弧菌O1血清型小川的免疫层析侧流装置的研制

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Objectives: Cholera is an acute malignant infectious disease caused by the bacteria Vibrio cholerae leading to severe dehydrating diarrhea and vomiting, even high rates of mortality in some cases. However, the prevention of the epidemic disease is achievable if proper sanitation practices are followed, provided the accurate and prompt diagnosis of each prevalent serotype in cholera epidemic. The current gold standard of bacterial culture is inadequate for rapid diagnosis. Our aim is to develop an immunochromatographic test format for O1 serotype Ogawa diagnosis and provide the need for better epidemic prevention and early response. Design and methods: The monoclonal antibodies were raised in conventional method and subsequently screened for a match pair. A variety of related and unrelated bacteria strains recruited were employed to test their sensitivity, specificity etc. by indirect ELISA. The human fecal samples were used to test the final lateral-flow device product to satisfy the measurement requirement. Results: A new monoclonal antibody (McAb) pair, named IXiao3G6 and IXiao1D9, was generated, which is specifically against V. cholerae O1 serotype Ogawa. Additionally, we developed an immunochromatographic lateral flow device (LFD) using this McAb pair for the highly specific and rapid (5min) detection of Ogawa. Conclusions: Our product has advantages of simplicity and precision, and can benefit the scene and elementary medical institutions.
机译:目的:霍乱是由霍乱弧菌引起的急性恶性传染病,导致严重的脱水腹泻和呕吐,在某些情况下甚至导致很高的死亡率。但是,如果能正确,迅速地诊断出霍乱流行中的每种血清型,只要采取适当的卫生措施,就可以预防流行病。当前细菌培养的金标准不足以进行快速诊断。我们的目标是开发一种O1血清型Ogawa诊断的免疫色谱测试格式,并提供更好的防流行病和早期反应的需求。设计和方法:用常规方法制备单克隆抗体,然后筛选匹配对。募集了各种相关和不相关的细菌菌株,以通过间接ELISA测试其敏感性,特异性等。人体粪便样本用于测试最终的侧向流动装置产品,以满足测量要求。结果:产生了一对新的单克隆抗体(McAb),分别名为IXiao3G6和IXiao1D9,该抗体特异性针对霍乱弧菌O1血清型小川。此外,我们使用此McAb对开发了一种免疫色谱横向流动装置(LFD),用于对Ogawa的高特异性和快速(5分钟)检测。结论:我们的产品具有简单和精确的优点,可以使现场和基础医疗机构受益。

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