Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Rd, Laurel, MD, 20723, USA.
Sci Rep. 2018 Oct 26;8(1):15890. doi: 10.1038/s41598-018-33565-x.
Increased development of wearable sensors for physiological monitoring has spurred complementary interest in the detection of biochemical indicators of health and performance. We report a wearable sensor system for non-invasive detection of excreted human biomarkers in sweat. The system consists of a thin, flexible, kapton patch (2.5 × 7.5 cm) that can be coated with adhesive and affixed to the skin. The system can be controlled by a cell phone via a near-field communications protocol, charged wirelessly, and the data can be downloaded and displayed in a smart phone app. The system is designed such that the sensing element plugs into a low-profile socket, and can easily be removed and replaced as needed due to saturation or aging effects. As a demonstration case, we examined using an organic electrochemical transistor (OECT) within this system to monitor lactate concentration. Several different methods for optimizing the sensor performance were compared, including altering electrode materials, employing various immobilization techniques, and tailoring operating voltages. Resulting functional response of the lactate oxidase enzyme was compared as a function of the sensor variables. The OECT sensor was shown to have high sensitivity to lactate, however the sensing range is limited to lactate concentrations below approximately 1 mM.
可穿戴传感器在生理监测方面的发展日益增多,这促使人们对健康和性能的生化指标检测产生了互补的兴趣。我们报告了一种用于非侵入式检测汗液中人体生物标志物的可穿戴传感器系统。该系统由一个薄而灵活的 Kapton 贴片(2.5×7.5cm)组成,可以涂有粘合剂并贴附在皮肤上。该系统可以通过近场通信协议由手机控制,通过无线方式充电,并且数据可以下载并在智能手机应用程序中显示。该系统的设计使得传感元件插入一个低轮廓插座,并且由于饱和或老化效应,可以轻松地移除和更换。作为一个演示案例,我们使用该系统中的有机电化学晶体管(OECT)来监测乳酸浓度。比较了几种优化传感器性能的方法,包括改变电极材料、采用各种固定化技术和调整工作电压。比较了乳酸氧化酶的功能响应作为传感器变量的函数。结果表明,OECT 传感器对乳酸具有高灵敏度,但检测范围仅限于约 1mM 以下的乳酸浓度。