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Sensor Based on Molecularly Imprinted Polymer Membranes and Smartphone for Detection of Fusarium Contamination in Cereals

机译:基于分子印迹聚合物膜和智能手机检测谷物中镰刀菌污染的传感器

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摘要

The combination of the generic mobile technology and inherent stability, versatility and cost-effectiveness of the synthetic receptors allows producing optical sensors for potentially any analyte of interest, and, therefore, to qualify as a platform technology for a fast routine analysis of a large number of contaminated samples. To support this statement, we present here a novel miniature sensor based on a combination of molecularly imprinted polymer (MIP) membranes and a smartphone, which could be used for the point-of-care detection of an important food contaminant, oestrogen-like toxin zearalenone associated with contamination of cereals. The detection is based on registration of natural fluorescence of zearalenone using a digital smartphone camera after it binds to the sensor recognition element. The recorded image is further processed using a mobile application. It shows here a first example of the zearalenone-specific MIP membranes synthesised in situ using “dummy template”-based approach with cyclododecyl 2, 4-dihydroxybenzoate as the template and 1-allylpiperazine as a functional monomer. The novel smartphone sensor system based on optimized MIP membranes provides zearalenone detection in cereal samples within the range of 1–10 µg mL demonstrating a detection limit of 1 µg mL in a direct sensing mode. In order to reach the level of sensitivity required for practical application, a competitive sensing mode is also developed. It is based on application of a highly-fluorescent structural analogue of zearalenone (2-[(pyrene-l-carbonyl) amino]ethyl 2,4-dihydroxybenzoate) which is capable to compete with the target mycotoxin for the binding to zearalenone-selective sites in the membrane’s structure. The competitive mode increases 100 times the sensor’s sensitivity and allows detecting zearalenone at 10 ng mL . The linear dynamic range in this case comprised 10–100 ng mL . The sensor system is tested and found effective for zearalenone detection in maize, wheat and rye flour samples both spiked and naturally contaminated. The developed MIP membrane-based smartphone sensor system is an example of a novel, inexpensive tool for food quality analysis, which is portable and can be used for the “field” measurements and easily translated into the practice.
机译:合成受体的通用移动技术和固有稳定性,多功能性和成本效益的组合允许产生光学传感器,以用于潜在的任何兴趣分析物,因此,有资格作为大量常规分析的平台技术污染的样品。为了支持这一陈述,我们在这里介绍一种基于分子印迹聚合物(MIP)膜和智能手机的组合的新型微型传感器,其可用于重要的食物污染物,雌激素样毒素的护理点检测与谷物污染相关的Zearalenone。该检测基于在与传感器识别元件绑定之后使用数字智能手机相机的Zearalenone的天然荧光的登记。使用移动应用程序进一步处理录制的图像。这里显示在此显示使用“基于”基础的方法合成的Zearalenone特异性MIP膜的第一实例,使用“虚拟模板”方法与环二癸基2,4-二羟基苯甲酸酯作为模板和1-烯丙基哌嗪作为官能单体。基于优化的MIP膜的新型智能手机传感器系统在1-10μgml范围内的谷物样品中提供Zearalenone检测,在直接感测模式下显示1μgml的检测限。为了达到实际应用所需的灵敏度水平,还开发了竞争感测模式。它基于酸甲酮(2 - (芘-1-羰基)氨基]乙基2,4-二羟基苯甲酸乙酯的高荧光结构类似物的应用,该乙基2,4-二羟基苯甲酸酯能够与靶霉菌毒素竞争,用于与Zearalenone选择性结合膜结构中的网站。竞争模式增加了传感器灵敏度的100倍,并允许检测10 ng mL的Zearalenone。这种情况下的线性动态范围包括10-100ng ml。传感器系统经过测试,发现在玉米,小麦和黑麦面粉样品中有效的Zearalenone检测,既尖刺和天然污染。开发的MIP膜的智能手机传感器系统是一种新颖,廉价的食品质量分析工具的示例,其是便携式的,可用于“现场”测量,并容易地翻译成实践。

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