Instituto de Microelectrónica de Barcelona (IMB-CNM), CSIC, Bellaterra, Spain.
Swiss Olympic Medical Center, Lausanne University Hospital, Lausanne, Switzerland.
Biosens Bioelectron. 2024 Oct 15;262:116560. doi: 10.1016/j.bios.2024.116560. Epub 2024 Jul 11.
The development of wearable devices for sweat analysis has experienced significant growth in the last two decades, being the main focus the monitoring of athletes health during workouts. One of the main challenges of these approaches has been to attain the continuous monitoring of sweat for time periods over 1 h. This is the main challenge addressed in this work by designing an analytical platform that combines the high performance of potentiometric sensors and a fluidic structure made of a plastic fabric into a multiplexed wearable device. The platform comprises Ion-Sensitive Field-Effect Transistors (ISFETs) manufactured on silicon, a tailor-made solid-state reference electrode, and a temperature sensor integrated into a patch-like polymeric substrate, together with the component that easily collects and drives samples under continuous capillary flow to the sensor areas. ISFET sensors for measuring pH, sodium, and potassium ions were fully characterized in artificial sweat solutions, providing reproducible and stable responses. Then, the real-time and continuous monitoring of the biomarkers in sweat with the wearable platform was assessed by comparing the ISFETs responses recorded during an 85-min continuous exercise session with the concentration values measured using commercial Ion-Selective Electrodes (ISEs) in samples collected at certain times during the session. The developed sensing platform enables the continuous monitoring of biomarkers and facilitates the study of the effects of various real working conditions, such as cycling power and skin temperature, on the target biomarker concentration levels.
在过去的二十年中,用于汗液分析的可穿戴设备得到了快速发展,主要关注运动员在锻炼过程中的健康监测。这些方法的主要挑战之一是实现对汗液的连续监测,监测时间超过 1 小时。本工作通过设计一个分析平台来应对这一主要挑战,该平台将具有高性能的电势传感器与由塑料织物制成的流体结构结合到一个多路复用的可穿戴设备中。该平台包括在硅上制造的离子敏场效应晶体管 (ISFET)、定制的固态参比电极和集成到类似片状聚合物基底中的温度传感器,以及一个组件,该组件可轻松地在连续毛细流动下收集和驱动样品进入传感器区域。用于测量 pH 值、钠离子和钾离子的 ISFET 传感器在人工汗液溶液中进行了充分的特征描述,提供了可重复和稳定的响应。然后,通过将在 85 分钟连续运动过程中记录的 ISFET 响应与在运动过程中的某个时间点收集的样本中使用商业离子选择性电极 (ISE) 测量的浓度值进行比较,评估了可穿戴平台对汗液中生物标志物的实时和连续监测。开发的传感平台能够实现生物标志物的连续监测,并方便研究各种实际工作条件(如骑行功率和皮肤温度)对目标生物标志物浓度水平的影响。