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Self-Powered Wireless Carbohydrate/Oxygen Sensitive Biodevice Based on Radio Signal Transmission

机译:基于无线电信号传输的自供电无线碳水化合物/氧气敏感生物设备

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摘要

Here for the first time, we detail self-contained (wireless and self-powered) biodevices with wireless signal transmission. Specifically, we demonstrate the operation of self-sustained carbohydrate and oxygen sensitive biodevices, consisting of a wireless electronic unit, radio transmitter and separate sensing bioelectrodes, supplied with electrical energy from a combined multi-enzyme fuel cell generating sufficient current at required voltage to power the electronics. A carbohydrate/oxygen enzymatic fuel cell was assembled by comparing the performance of a range of different bioelectrodes followed by selection of the most suitable, stable combination. Carbohydrates (viz. lactose for the demonstration) and oxygen were also chosen as bioanalytes, being important biomarkers, to demonstrate the operation of the self-contained biosensing device, employing enzyme-modified bioelectrodes to enable the actual sensing. A wireless electronic unit, consisting of a micropotentiostat, an energy harvesting module (voltage amplifier together with a capacitor), and a radio microchip, were designed to enable the biofuel cell to be used as a power supply for managing the sensing devices and for wireless data transmission. The electronic system used required current and voltages greater than 44 µA and 0.57 V, respectively to operate; which the biofuel cell was capable of providing, when placed in a carbohydrate and oxygen containing buffer. In addition, a USB based receiver and computer software were employed for proof-of concept tests of the developed biodevices. Operation of bench-top prototypes was demonstrated in buffers containing different concentrations of the analytes, showcasing that the variation in response of both carbohydrate and oxygen biosensors could be monitored wirelessly in real-time as analyte concentrations in buffers were changed, using only an enzymatic fuel cell as a power supply.
机译:在这里,我们首次详细介绍了具有无线信号传输功能的自包含(无线和自供电)生物设备。具体来说,我们演示了自我维持的碳水化合物和对氧气敏感的生物设备的运行情况,该设备由无线电子单元,无线电发射器和单独的传感生物电极组成,由组合的多酶燃料电池提供电能,以所需的电压产生足够的电流来供电电子产品。通过比较一系列不同生物电极的性能,然后选择最合适,稳定的组合,来组装碳水化合物/氧气酶燃料电池。还选择了碳水化合物(用于演示的乳糖)和氧气作为生物分析物,它们是重要的生物标志物,以证明自含式生物传感设备的运行,并使用酶修饰的生物电极来进行实际传感。无线电子单元由微型稳压器,能量收集模块(电压放大器和电容器)以及无线电微芯片组成,旨在使生物燃料电池可用作管理传感设备和无线设备的电源。数据传输。电子系统使用所需的电流和电压分别大于44 µA和0.57 V才能运行。当置于碳水化合物和含氧缓冲液中时,生物燃料电池能够提供的能量。此外,基于USB的接收器和计算机软件被用于开发的生物设备的概念验证测试。在含有不同浓度分析物的缓冲液中演示了台式原型的操作,这表明当改变缓冲液中分析物浓度时,仅使用酶燃料即可实时监测碳水化合物和氧气生物传感器响应的变化。电池作为电源。

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