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Delayed Sensor Activation Based on Transient Coatings: Biofouling Protection in Complex Biofluids

机译:基于瞬态涂层的延迟传感器激活:复杂生物流体中的生物污染保护

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摘要

Transient polymeric coatings with a programmable transiency behavior are used for delayed exposure of fresh surfaces of multi-electrode sensor arrays at preselected times. Such delayed sensor actuation is shown to be extremely attractive for addressing severe biofouling characteristic of electrochemical biosensors in complex biofluids. Controlled coating dissolution and tunable sequential actuation of the individual sensing electrodes are achieved by tailoring the characteristics of the coating (density and thickness). The unique features offered by these delayed sensors allowed direct glucose monitoring in untreated blood and saliva samples over prolonged periods. This attractive delayed-sensor exposure concept, offering time-tunable sequential activation of multiple sensors with remarkable anti-biofouling properties, indicates considerable promise for operating sensors continuously in complex body fluids.
机译:具有可编程瞬态行为的瞬态聚合物涂层用于在预先选择的时间延迟暴露多电极传感器阵列的新鲜表面。对于解决复杂生物流体中电化学生物传感器的严重生物污染特征,这种延迟的传感器致动表现出极大的吸引力。通过调整涂层的特性(密度和厚度),可以实现各个感应电极的受控涂层溶解和可调顺序操作。这些延迟传感器提供的独特功能允许长时间对未经处理的血液和唾液样本进行直接葡萄糖监测。这种具有吸引力的延迟传感器暴露概念,提供具有显着的抗生物污垢特性的多个传感器的时间可调顺序激活,为在复杂的体液中连续运行传感器提供了巨大希望。

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