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首页> 外文期刊>Journal of nanoscience and nanotechnology >A novel piezoelectric quartz micro-array immunosensor for detection of immunoglobulinE
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A novel piezoelectric quartz micro-array immunosensor for detection of immunoglobulinE

机译:用于检测免疫球蛋白的新型压电石英微阵列免疫传感器

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摘要

A novel multi-channel 2 x 5 model of piezoelectric (PZ) micro-array immunosensor has been developed for quantitative detection of human immunoglobulinE (IgE) in serum. Every crystal unit of the fabricated piezoelectric IgE micro-array immunosensor can oscillate without interfering each other. A multi-channel 2 x 5 model micro-array immunosensor as compared with the traditional one-channel immunosensor can provide eight times higher detection speeds for IgE assay. The anti-IgE antibody is deposited on the gold electrode's surface of 10 MHz AT-cut quartz crystals by SPA (staphylococcal protein A), and serves as an antibody recognizing layer. The highly ordered antibody monolayers ensure well-controlled surface structure and offer many advantages to the performance of the sensor. The uniform amount of antibody monolayer coated by the SPA is good, and non-specific reaction caused by other immunoglobulin in sample is found. The fabricated PZ immunosensor can be used for human IgE determination in the range of 5-300 IU/ml with high precision (CV is 4%). 50 human serum samples were detected by the micro-array immunosensor, and the results agreed well with those given by the commercially ELISA test kits. The correlation coefficient is 0.94 between ELISA and PZ immunosensor. After regeneration with NaOH the coated immunosensor can be reused 6 times without appreciable loss of activity.
机译:已开发出一种新颖的多通道2 x 5压电(PZ)微阵列免疫传感器模型,用于定量检测血清中的人免疫球蛋白E(IgE)。所制造的压电IgE微阵列免疫传感器的每个晶体单元都可以振荡而不会互相干扰。与传统的单通道免疫传感器相比,多通道2 x 5模型微阵列免疫传感器可以为IgE分析提供八倍的检测速度。抗IgE抗体通过SPA(葡萄球菌蛋白A)沉积在10 MHz AT切割的石英晶体的金电极表面,并用作抗体识别层。高度有序的抗体单层可确保良好控制的表面结构,并为传感器的性能提供许多优势。 SPA包被的抗体单层均匀量良好,并且发现样品中其他免疫球蛋白引起的非特异性反应。所制备的PZ免疫传感器可在5-300 IU / ml范围内以高精度(CV为4%)用于人类IgE测定。用微阵列免疫传感器检测了50个人的血清样品,其结果与商业ELISA测试试剂盒给出的结果非常吻合。 ELISA和PZ免疫传感器之间的相关系数为0.94。用NaOH再生后,可将已涂覆的免疫传感器重复使用6次,而不会明显丧失活性。

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