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Sensing by wireless reading Ag/AgCl redox conversion on RFID tag: universal, battery-less biosensor design

机译:通过无线读取AG / AGCL Redox转换在RFID标签上感应:通用,较少的生物传感器设计

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Massive integration of biosensors into design of Internet-of-Things (IoT) is vital for progress of healthcare. However, the integration of biosensors is challenging due to limited availability of battery-less biosensor designs. In this work, a combination of nanomaterials for wireless sensing of biological redox reactions is described. The design exploits silver nanoparticles (AgNPs) as part of the RFID tag antenna. We demonstrate that a redox enzyme, particularly, horseradish peroxidase (HRP), can convert AgNPs into AgCl in the presence of its substrate, hydrogen peroxide. This strongly changes the impedance of the tag. The presented example exploits gold nanoparticle (AuNP)-assisted electron transfer (ET) between AgNPs and HRP. We show that AuNP is a vital intermediate for establishing rapid ET between the enzyme and AgNPs. As an example, battery-less biosensor-RFID tag designs for Hsub2/subOsub2/sub and glucose are demonstrated. Similar battery-less sensors can be constructed to sense redox reactions catalysed by other oxidoreductase enzymes, their combinations, bacteria or other biological and even non-biological catalysts. In this work, a fast and general route for converting a high number of redox reaction based sensors into battery-less sensor-RFID tags is described.
机译:将生物传感器的大规模整合到互联网上的设计(IOT)对医疗保健的进步至关重要。然而,由于电池的生物传感器设计有限,生物传感器的整合是具有挑战性的。在这项工作中,描述了用于生物氧化还原反应的无线感测的纳米材料的组合。该设计利用银纳米颗粒(AGNP)作为RFID标签天线的一部分。我们证明氧化还原酶,特别是辣根过氧化物酶(HRP)可以在其基质的存在下,将AgNP转化为AgCl过氧化氢。这强烈改变了标签的阻抗。所提出的示例利用AgNP和HRP之间的金纳米粒子(AUNP) - 拟商电子转移(ET)。我们表明AUNP是在酶和AGNP之间建立快速等的重要中间。作为一个例子,对H 2 O 2 和葡萄糖进行了较少的Biosensor-RFID标签设计。可以构建类似的电池传感器以感测由其他氧化还原酶,它们的组合,细菌或其他生物甚至非生物催化剂催化的氧化还原反应。在这项工作中,描述了一种快速和一般的路线,用于将大量氧化还原反应基于氧化还原反应的传感器转换成更脱脂的传感器-RFID标签。

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