Kim Jayoung, Sempionatto Juliane R, Imani Somayeh, Hartel Martin C, Barfidokht Abbas, Tang Guangda, Campbell Alan S, Mercier Patrick P, Wang Joseph
Department of Nanoengineering University of California San Diego, La Jolla CA 92093 USA.
Department of Electrical and Computer Engineering University of California San Diego, La Jolla CA 92093 USA.
Adv Sci (Weinh). 2018 Aug 2;5(10):1800880. doi: 10.1002/advs.201800880. eCollection 2018 Oct.
The development of wearable biosensors for continuous noninvasive monitoring of target biomarkers is limited to assays of a single sampled biofluid. An example of simultaneous noninvasive sampling and analysis of two different biofluids using a single wearable epidermal platform is demonstrated here. The concept is successfully realized through sweat stimulation (via transdermal pilocarpine delivery) at an anode, alongside extraction of interstitial fluid (ISF) at a cathode. The system thus allows on-demand, controlled sampling of the two epidermal biofluids at the same time, at two physically separate locations (on the same flexible platform) containing different electrochemical biosensors for monitoring the corresponding biomarkers. Such a dual biofluid sampling and analysis concept is implemented using a cost-effective screen-printing technique with body-compliant temporary tattoo materials and conformal wireless readout circuits to enable real-time measurement of biomarkers in the sampled epidermal biofluids. The performance of the developed wearable device is demonstrated by measuring sweat-alcohol and ISF-glucose in human subjects consuming food and alcoholic drinks. The different compositions of sweat and ISF with good correlations of their chemical constituents to their blood levels make the developed platform extremely attractive for enhancing the power and scope of next-generation noninvasive epidermal biosensing systems.
用于连续无创监测目标生物标志物的可穿戴生物传感器的发展仅限于对单一采样生物流体的检测。本文展示了一个使用单个可穿戴表皮平台同时对两种不同生物流体进行无创采样和分析的例子。通过在阳极进行汗液刺激(通过透皮递送毛果芸香碱),同时在阴极提取组织间液(ISF),该概念得以成功实现。因此,该系统允许在同一柔性平台上的两个物理上分开的位置,同时对两种表皮生物流体进行按需、可控采样,这两个位置包含不同的电化学生物传感器,用于监测相应的生物标志物。这种双生物流体采样和分析概念是使用具有人体适应性的临时纹身材料和共形无线读出电路的经济高效的丝网印刷技术来实现的,以实现对采样的表皮生物流体中的生物标志物进行实时测量。通过测量食用食物和酒精饮料的人体受试者的汗液酒精含量和组织间液葡萄糖含量,证明了所开发的可穿戴设备的性能。汗液和组织间液的不同成分及其化学成分与血液水平的良好相关性,使得所开发的平台对于增强下一代无创表皮生物传感系统的能力和范围极具吸引力。