首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of a smartphone-based biomimetic sensor for aflatoxin B1 detection using molecularly imprinted polymer membranes
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Development of a smartphone-based biomimetic sensor for aflatoxin B1 detection using molecularly imprinted polymer membranes

机译:使用分子印迹聚合物膜进行黄曲霉毒素B1检测的基于智能手机的仿生传感器的研制

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A novel smartphone-based optical biomimetic sensor based on free-standing molecularly imprinted polymer (MIP) membranes was developed for rapid and sensitive point-of-care detection of aflatoxin B1. The developed MIP membranes were capable of selective recognition of the target analyte and, at the same time, of generation of a fluorimetric sensor response, which could be registered using the camera of a smartphone and analysed using image analysis. The developed system provides a possibility of synchronous detection of aflatoxin B1 in 96 channels. UV irradiation of aflatoxin B1, selectively bound by the MIP membranes from the analysed samples, initiated fluorescence of aflatoxin B1 with intensity directly proportional to its concentration. The composition of the MIP membranes used as a recognition element was optimised taking into account data of computational modelling. Two functional monomers (2-acrylamido-2-methyl-1-propansulfonic acid and acrylamide) were identified as optimal for the formation of aflatoxin B1 -selective binding sites in the structure of the MIP membranes. Working characteristics of the smartphone-based sensor system were also estimated. The influence of pH and of buffer and NaCl concentrations on the smartphone-based sensor responses were studied. High selectivity of the developed sensor system towards aflatoxin B1 was confirmed in experiments with the close structural analogue of the target analyte - aflatoxin G2, and ochratoxin A. The detection limit for aflatoxin B1 using the smartphone-based sensor systems was found to be 20 ng mL(-1) for the sensor based on MIP membranes synthesised with acrylamide as a functional monomer. The storage stability of the recognition elements of the developed sensors was estimated as one year when stored at 22 degrees C. The possibility to detect the aflatoxin B1 in contaminated food samples was shown. The MIP-membrane-based sensor system provided a convenient point-of care approach in food safety testing.
机译:基于独立分子印迹聚合物(MIP)膜的基于新型智能手机的光学仿真传感器,用于快速和敏感的黄曲霉毒素B1的护理点检测。开发的壁膜能够选择性地识别靶分析物,同时产生荧光传感器响应,其可以使用智能手机的相机登记并使用图像分析进行分析。开发系统提供了在96个通道中同步检测黄曲霉毒素B1的可能性。黄曲霉毒素B1的紫外线照射,由分析的样品中选择性地束缚,并强烈地与其浓度成比例的荧光毒素B1的荧光。考虑到计算建模的数据,优化了用作识别元素的壁膜的组成。将两种官能单体(2-丙基酰胺-2-甲基-1-丙烷磺酸和丙烯酰胺)鉴定为在壁膜的结构中形成黄曲霉毒素B1 - 选择结合位点的最佳选择。还估计了基于智能手机的传感器系统的工作特性。研究了pH和缓冲液和NaCl浓度对基于智能手机的传感器响应的影响。在实验中,在靶分析物 - 黄曲霉毒素G2和Ochratoxin A的紧密结构类似物中确认发育传感器系统对黄曲霉毒素B1的高选择性。发现使用智能手机的传感器系统的黄曲霉毒素B1的检测限为20 ng基于用丙烯酰胺作为官能单体合成的壁膜的传感器M1(-1)。当储存在22摄氏度时,估计发育传感器的识别元件的储存稳定性估计为一年。显示了检测污染的食物样品中的黄曲霉毒素B1的可能性。基于麦皮膜的传感器系统提供了方便的食品安全测试点。

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