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Electrochemical biochip for applications to wireless and batteryless monitoring of free-moving mice

机译:电化学生物芯片,用于自由移动鼠标的无线和无电池监控

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A multi-sensing platform for applications in wireless and batteryless monitoring of free-moving small animals is presented in this paper. The proposed platform hosts six sensors: four biosensors for sensing of both disease biomarkers and therapeutic compounds, and two further sensors (T and pH) for biosensor calibration. Electrodeposition of Multi-Walled Carbon Nanotubes (MWCNTs) and the subsequent function-alization with proper enzymes is used to assure sensitivity and specificity in electrochemical biosensing. The realized sensors are demonstrated to be capable of measuring several parameters: lactate with a sensitivity of 77±26 μA/mM· cm and a limit of detection (LOD) of 4±1 μM; glucose with a sensitivity of 63±15 μA/mM· cm and a LOD of 8±2 μM; Etoposide (a well known anti-cancer agent) with a sensitivity of 0.15±0.04 mA/mM· cm and a LOD of 4±1 μM; Open Circuit Potential (OCP) measurements are used on a Pt/IrOx junction to sense pH with a sensitivity of around −75±5mV/pH; while a Pt resistive thermal device is used to measure physiological temperature-range with an average sensitivity of 0.108±0.001 kΩ/°C.
机译:本文提出了一种用于无线和无电池监控小动物运动的多感测平台。提议的平台包含六个传感器:四个用于感测疾病生物标志物和治疗性化合物的生物传感器,以及两个用于生物传感器校准的其他传感器(T和pH)。多壁碳纳米管(MWCNT)的电沉积以及随后用适当的酶进行的功能化用于确保电化学生物传感中的灵敏度和特异性。事实证明,所实现的传感器能​​够测量多个参数:乳酸盐,灵敏度为77±26μA/ mM·cm,检测极限(LOD)为4±1μM;葡萄糖的灵敏度为63±15μA/ mM·cm,LOD为8±2μM;依托泊苷(一种众所周知的抗癌药),灵敏度为0.15±0.04 mA / mM·cm,LOD为4±1μM;在Pt / IrOx结上使用开路电势(OCP)测量,以大约-75±5mV / pH的灵敏度检测pH。而Pt电阻热装置则用于测量生理温度范围,平均灵敏度为0.108±0.001kΩ/°C。

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