首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A portable immune-thermometer assay based on the photothermal effect of graphene oxides for the rapid detection of Salmonella typhimurium
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A portable immune-thermometer assay based on the photothermal effect of graphene oxides for the rapid detection of Salmonella typhimurium

机译:一种基于石墨烯氧化物的光热效应进行快速检测沙门氏菌血硫尿的便携式免疫温度计测定

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摘要

Previously reported photothermal strip test methods generally used a membrane as the antibody carrier and a thermal imaging camera or sensor as detector. To further simplify the detection device, a modified mercury head of the glass thermometer can act as the antibody carrier. Meanwhile, the temperature variation signal (Delta T) generated by the photothermal effect of labeled nanomaterials can be detected by the thermometer directly. Thus, the antibody carrier and detector can be integrated on a portable and cheap thermometer, which greatly simplified the device and detection steps of the photothermal method. The excellent photothermal effect of graphene oxides was used to improve the detection sensitivity. The main parameters of the performance of immune-thermometer assay were optimized and the Salmonella typhimurium was chosen as the representative target. Under the optimized conditions, the AT and the different number of Salmonella typhimurium were plotted to establish the standard curve. The detection limit was estimated to be 10(3) CFU.mL(-1). The entire detection operation was consistently finished in 15 min. Overall, the proposed immune-thermometer exhibited good precision, selectivity and acceptable stability. The immune-thermometer assay was also successfully implemented and validated in different foodstuffs, which showed that it can be used as a novel and promising technique for rapid, simple and on-site screening of hazards in food, biological, clinical or environmental samples.
机译:先前报道的光热带剥离试验方法通常用膜作为抗体载体和热成像相机或传感器作为检测器。为了进一步简化检测装置,玻璃温度计的改进的汞头可以充当抗体载体。同时,可以直接通过温度计检测由标记纳米材料的光热效应产生的温度变化信号(ΔT)。因此,抗体载体和检测器可以集成在便携式和便宜的温度计上,这极大地简化了光热方法的装置和检测步骤。石墨烯氧化物的优异光热效应用于改善检测灵敏度。优化了免疫温度计测定的性能的主要参数,并选择了沙门氏菌毒蕈氏菌作为代表性靶标。在优化的条件下,绘制AT和不同数量的沙门氏菌毛螺旋毒蕈曲氏硫脲以建立标准曲线。检测限估计为10(3)CFU.ML(-1)。整个检测操作在15分钟内始终完成。总体而言,所提出的免疫温度计表现出良好的精度,选择性和可接受的稳定性。在不同的食品中也成功地实施并验证了免疫温度计测定,这表明它可以用作快速,简单,现场筛查食品,生物,临床或环境样品的危害的新颖和有前途的技术。

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