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Molecularly selective nanoporous membrane-based wearable organic electrochemical device for noninvasive cortisol sensing

机译:基于分子选择性纳米孔膜的可穿戴有机电化学装置,用于非侵入性皮质醇传感

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Wearable biosensors have emerged as an alternative evolutionary development in the field of healthcare technology due to their potential to change conventional medical diagnostics and health monitoring. However, a number of critical technological challenges including selectivity, stability of (bio)recognition, efficient sample handling, invasiveness, and mechanical compliance to increase user comfort must still be overcome to successfully bring devices closer to commercial applications. We introduce the integration of an electrochemical transistor and a tailor-made synthetic and biomimetic polymeric membrane, which acts as a molecular memory layer facilitating the stable and selective molecular recognition of the human stress hormone cortisol. The sensor and a laser-patterned microcapillary channel array are integrated in a wearable sweat diagnostics platform, providing accurate sweat acquisition and precise sample delivery to the sensor interface. The integrated devices were successfully used with both ex situ methods using skin-like microfluidics and on human subjects with on-body real-sample analysis using a wearable sensor assembly.
机译:由于可穿戴生物传感器具有改变常规医学诊断和健康监测的潜力,因此已成为医疗技术领域的一种替代发展方式。但是,必须成功克服许多关键的技术挑战,包括选择性,(生物)识别的稳定性,有效的样品处理,侵入性和提高用户舒适度的机械柔韧性,才能使设备更接近商业应用。我们介绍了电化学晶体管与量身定制的合成和仿生聚合物膜的集成,该膜充当分子存储层,促进了人类应激激素皮质醇的稳定和选择性分子识别。传感器和激光图案化的微毛细管通道阵列集成在可穿戴的汗液诊断平台中,可提供准确的汗液采集和向传感器接口的精确样品输送。集成的设备已成功用于使用类似皮肤的微流体的非原位方法以及使用可穿戴传感器组件进行人体真实样品分析的人体对象。

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