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Recent advances of molecularly imprinted polymer-based sensors in the detection of food safety hazard factors

机译:分子印迹聚合物基传感器在食品安全危害因素检测中的最新进展

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摘要

With increasing economic globalization, food safety is becoming the most serious concern in the food production and distribution system. Food safety hazard factors (FSHFs) can be categorized into chemical hazards, biological hazards and physical hazards, with the detection of the former two having fascinated interdisciplinary research areas spanning chemistry, material science and biological science. Molecularly imprinted polymer (MIP) -based sensors overcome many limitations of traditional detection methods and provide opportunities for efficient, sensitive and low-cost detection using smart miniaturized equipment. With highly specific molecular recognition capacity and high stability in harsh chemical and physical conditions, MIPs have been used in sensing platforms such as electrochemical, optical and mass-sensitive sensors as promising alternatives to bio-receptors for food analysis. In this systemic review, we summarize recent advances of MIPs and MIP-based sensors, such as popular monomers, usual polymerization strategies, fresh modification materials and advanced sensing mechanisms. The applications of MIP-based sensors in FSHF detection are discussed according to sensing mechanisms, including electrochemistry, optics and mass-sensitivity. Finally, future perspectives and challenges are discussed.
机译:随着经济全球化的增加,食品安全正在成为粮食生产和分配系统中最严重的关注。食品安全危险因素(FSHF)可以分为化学危害,生物危害和身体危害,检测前两个具有跨越化学,物质科学和生物科学的迷人跨学科研究领域。分子印迹聚合物(MIP)基于传感器克服了传统检测方法的许多限制,并使用智能小型设备提供了高效,灵敏和低成本检测的机会。在苛刻的化学和物理条件下具有高度特定的分子识别能力和高稳定性,MIPS已被用于传感平台,例如电化学,光学和质量敏感传感器,作为对食物分析的生物受体的有前途的替代品。在这种全身审查中,我们总结了最近的MIP和基于MIP的传感器的进步,例如流行的单体,通常的聚合策略,新改装材料和先进的传感机制。根据感测机构讨论了基于MIP的传感器在FSHF检测中的应用,包括电化学,光学和质量敏感性。最后,讨论了未来的观点和挑战。

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