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Development and Application of an Optical Biosensor Immunoassay for Aflatoxin M-1 in Bovine Milk

机译:牛奶中黄曲霉毒素M-1光学生物传感器免疫测定的研制与应用

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摘要

An automated optical biosensor-based immunoassay exploiting surface plasmon resonance detection for the quantitation of aflatoxin M-1 (AFM(1)) in milk and milk powders is described. A monoclonal antibody and an immobilized protein-AFM(1) conjugate are utilized in a simple inhibition format following aqueous extraction and immunoaffinity clean-up of the sample, thereby avoiding the need for signal amplification techniques. The sensor surface is stable over multiple regeneration cycles, and the technique yields a method detection limit of 0.1 ng g(-1), which is five times lower than the European Commission maximum residue limit. The described antibody-based biosensor technique provides the advantages of quantitative data, automation, and real-time and non-labeled detection of AFM(1). The method therefore facilitates routine quantitative threshold-level screening for the identification of potential non-compliance of AFM(1) content prior to confirmatory analysis by reference chromatographic methods and may be considered to complement the enzyme-linked immunosorbent assay technique.
机译:描述了一种用于定量用于牛奶和奶粉中的AFLATOXIN M-1(AFM(1))的用于定量用于定量的基于磷脂生物传感器的免疫分析。在样品的萃取水溶液和免疫亲和清除后,以单克隆抗体和固定蛋白-AFM(1)缀合物用于样品的清除,从而避免了对信号放大技术的需求。传感器表面在多个再生循环上是稳定的,并且该技术产生0.1 ng G(-1)的方法检测限,这是比欧盟委员会最大残留极限低的五倍。所描述的基于抗体的生物传感器技术提供了定量数据,自动化和实时和非标记检测的优势(1)。因此,该方法有助于在通过参考色谱方法确认分析之前鉴定常规定量阈值水平筛选,用于鉴定AFM(1)含量的潜在不顺应性,并且可以认为可以互补酶联免疫吸附测定技术。

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