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A Wearable Electrochemical Sensor Based on a Molecularly Imprinted Polymer Integrated with a Copper Benzene-135-Tricarboxylate Metal-Organic Framework for the On-Body Monitoring of Cortisol in Sweat

机译:一种基于分子印迹聚合物的可穿戴电化学传感器该聚合物与苯-135-三羧酸铜有机框架集成用于汗液中皮质醇的体内监测

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摘要

Owing to their potential to transform traditional medical diagnostics and health monitoring, wearable biosensors have become an alternative evolutionary technology in the field of medical care. However, it is still necessary to overcome some key technique challenges, such as the selectivity, sensitivity, and stability of biometric identification. Herein, a novel, wearable electrochemical sensor based on a molecularly imprinted polymer (MIP) integrated with a copper benzene-1,3,5-tricarboxylate metal–organic framework (MOF) was designed for the detection of stress through the on-body monitoring of cortisol in sweat. The MOF was used as the substrate for MIP deposition to enhance the stability and sensitivity of the sensor. The sensor consisted of two layers, with a microfluidic layer as the top layer for spontaneous sweating and a modified electrode as the bottom layer for sensing. The sensor measured cortisol levels by detecting the current change that occurred when the target molecules bound to the imprinted cavities, using Prussian blue nanoparticles embedded in the MIP framework as the REDOX probe. The proposed sensor exhibited a linear detection range of 0.01–1000 nM with a detection limit of 0.0027 nM, and favorable specificity over other analogies. This facile anti-body free sensor showed excellent stability, and can be successfully applied for in situ cortisol monitoring.
机译:由于可穿戴生物传感器具有改变传统医疗诊断和健康监测的潜力,它们已成为医疗保健领域的另一种进化技术。然而,仍然需要克服一些关键的技术挑战,例如生物特征识别的选择性、灵敏度和稳定性。在此,设计了一种基于分子印迹聚合物 (MIP) 的新型可穿戴电化学传感器,该聚合物与铜苯-1,3,5-三羧酸金属有机框架 (MOF) 集成,用于通过体内监测汗液中的皮质醇来检测压力。以 MOF 作为 MIP 沉积的衬底,以增强传感器的稳定性和灵敏度。传感器由两层组成,微流控层作为自发出汗的顶层,改性电极作为传感的底层。该传感器使用嵌入 MIP 框架中的普鲁士蓝纳米颗粒作为 REDOX 探针,通过检测目标分子与印迹腔结合时发生的电流变化来测量皮质醇水平。所提出的传感器表现出 0.01–1000 nM 的线性检测范围,检测限为 0.0027 nM,并且比其他类似物具有良好的特异性。这种简单的无抗体传感器表现出优异的稳定性,可以成功应用于原位皮质醇监测。

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