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Luminex-Based Triplex Immunoassay for the Simultaneous Detection of Soy, Pea, and Soluble Wheat Proteins in Milk Powder

机译:基于Luminex的三重免疫分析法可同时检测奶粉中的大豆,豌豆和可溶性小麦蛋白

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摘要

An automated fluorescent microsphere-based flow cytometric triplex immunoassay, using the Luminex 100 flow analyzer with MultiAnalyte Profiling (xMAP) technology, was developed for the simultaneous detection of proteins from three vegetable sources as potential fraudulent adulterants in milk powder. In the final triplex inhibition immunoassay, soluble wheat proteins (SWP) and proteins from soy and pea were coupled to three different microsphere sets. A mixture of these microsphere sets was transferred to a microtiter plate well together with the sample and a mixture of three affinity-purified polyclonal antibodies raised against the proteins and labeled with a fluorophore (Alexa 532). After incubation for 1.5 h at room temperature in the dark, the fluorescence intensities on the microspheres were directly measured (no wash procedure) in the Luminex during 10 s per well (100 microspheres per set). The sensitivities of the three assays for plant protein extracts were determined as 0.5-0.6 mu g/mL at 50% inhibition. For the detection of the vegetable proteins in milk powder, the samples were dissolved in buffer (0.1 g in 10 mL) and further diluted (20 times) to create a 50% inhibition at approximately 0.5% of the vegetable proteins in the total protein content of milk powder. With the help of calibration standards, prepared under conditions comparable to those for sample materials, the triplex immunoassay proved to be quantitative above 0.1%, although concentrations in high-heated milk powders were underestimated. Due to the xMAP technology, in which 100 different microsphere sets can be distinguished, this triplex immunoassay can easily be extended to detect other possible adulterants.
机译:基于Luminex 100流动分析仪和MultiAnalyte Profiling(xMAP)技术的基于荧光微球的自动化流式细胞仪三重免疫分析法被开发出来,用于同时检测三种植物来源的蛋白质,这些蛋白质可能是奶粉中的假冒伪劣品。在最后的三重抑制免疫测定中,可溶性小麦蛋白(SWP)和大豆和豌豆中的蛋白被偶联到三个不同的微球体上。将这些微球体的混合物与样品以及三种针对蛋白质的亲和纯化多克隆抗体的混合物一起转移至微量滴定板中,并用荧光团标记(Alexa 532)。在黑暗中于室温下孵育1.5小时后,在Luminex中每孔10秒(每套100个微球)中直接测量微球上的荧光强度(无需洗涤程序)。三种测定法对植物蛋白提取物的敏感性在50%抑制下测定为0.5-0.6μg / mL。为了检测奶粉中的植物蛋白,将样品溶于缓冲液(0.1 g / 10 mL)中,并进一步稀释(20倍),以抑制总蛋白含量中约0.5%的植物蛋白产生50%的抑制作用奶粉。借助于在与样品材料相当的条件下制备的校准标准品,尽管高估了奶粉中的浓度,但三重免疫分析法的定量结果被证明在0.1%以上。由于xMAP技术可以区分100个不同的微球体,因此该三重免疫测定可以轻松扩展以检测其他可能的掺假物。

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