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Electrochemical Affinity Biosensors Based on Disposable Screen-Printed Electrodes for Detection of Food Allergens

机译:基于一次性丝网印刷电极的电化学亲和力生物传感器,用于食品过敏原的检测

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摘要

Food allergens are proteins from nuts and tree nuts, fish, shellfish, wheat, soy, eggs or milk which trigger severe adverse reactions in the human body, involving IgE-type antibodies. Sensitive detection of allergens in a large variety of food matrices has become increasingly important considering the emergence of functional foods and new food manufacturing technologies. For example, proteins such as casein from milk or lysozyme and ovalbumin from eggs are sometimes used as fining agents in the wine industry. Nonetheless, allergen detection in processed foods is a challenging endeavor, as allergen proteins are degraded during food processing steps involving heating or fermentation. Detection of food allergens was primarily achieved via Enzyme-Linked Immuno Assay (ELISA) or by chromatographic methods. With the advent of biosensors, electrochemical affinity-based biosensors such as those incorporating antibodies and aptamers as biorecognition elements were also reported in the literature. In this review paper, we highlight the success achieved in the design of electrochemical affinity biosensors based on disposable screen-printed electrodes towards detection of protein allergens. We will discuss the analytical figures of merit for various disposable screen-printed affinity sensors in relation to methodologies employed for immobilization of bioreceptors on transducer surface.
机译:食物过敏原是坚果和树坚果,鱼类,贝类,小麦,大豆,鸡蛋或牛奶中的蛋白质,会触发人体严重的不良反应,涉及IgE型抗体。考虑到功能性食品和新食品制造技术的出现,灵敏地检测多种食品基质中的过敏原变得越来越重要。例如,有时将诸如牛奶中的酪蛋白或溶菌酶之类的蛋白质以及鸡蛋中的卵清蛋白等蛋白质用作葡萄酒工业中的澄清剂。尽管如此,在加工食品中检测过敏原是一项具有挑战性的工作,因为过敏原蛋白在涉及加热或发酵的食品加工步骤中会降解。食品过敏原的检测主要是通过酶联免疫分析(ELISA)或色谱方法完成的。随着生物传感器的出现,文献中还报道了基于电化学亲和力的生物传感器,例如那些结合抗体和适体作为生物识别元件的生物传感器。在这篇综述文章中,我们重点介绍了基于一次性丝网印刷电极的电化学亲和力生物传感器在设计上的成功,该传感器可用于检测蛋白质过敏原。我们将讨论与用于将生物受体固定在换能器表面上的方法有关的各种一次性丝网印刷亲和力传感器的分析价值。

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