Department of Bioengineering, University of Texas at Dallas, 800 West Campbell Road, Richardson, TX, 75080, USA.
Enlisense LLC, 1813 Audubon Pond Way, Allen, TX, 75013, USA.
Talanta. 2020 Jul 1;214:120810. doi: 10.1016/j.talanta.2020.120810. Epub 2020 Feb 8.
In this work, a low volume, sweat lactate sensor functioning on passively expressed eccrine sweat was designed, fabricated and tested in human sweat and its performance was benchmarked against a standard reference; Lactate Plus meter. This novel sensor comprises of graphene oxide (GO) nanosheets integrated into a nanoporous flexible electrode system for low-volume (1-5 μL) ultrasensitive impedance based detection of lactate using non-faradaic electron-ionic charge transfer. Lactate oxidase (LOD) enzyme was immobilized on the surface of GO nanosheets towards developing an affinity biosensor specific to the physiological relevant range (4-80 mM) of lactate in perspired human sweat. Sensing was achieved by measuring impedance changes specific to lactate binding along the GO nanosheet interface using electrochemical impedance spectroscopy. The sensor demonstrated a dynamic range from 1 to 100 mM spiked in synthetic and human sweat with a limit of detection of 1 mM. A specificity study conducted using cortisol expressed in sweat revealed a negative response to the lactate oxidase. Continuous lactate sensing studies were performed during which the sensor was responsive to concentrations of lactate up to 138.6 mM. Correlation of the sensor response with actual lactate concentration (1.3-113.4 mM) was found to be 0.955.
在这项工作中,设计、制造了一种基于被动表达的外分泌汗液的低体积、汗液乳酸传感器,并在人体汗液中进行了测试,其性能与标准参考物(Lactate Plus meter)进行了基准测试。这种新型传感器由氧化石墨烯(GO)纳米片集成到纳米多孔柔性电极系统中,用于通过非法拉第电子-离子电荷转移对低体积(1-5μL)的乳酸进行超灵敏阻抗检测。将乳酸氧化酶(LOD)酶固定在 GO 纳米片表面上,以开发针对生理相关范围内(4-80mM)乳酸的亲和生物传感器,用于人体汗液。通过使用电化学阻抗谱测量沿 GO 纳米片界面特定于乳酸结合的阻抗变化来实现传感。该传感器在合成汗液和人体汗液中的检测范围为 1 至 100mM,检测限为 1mM。使用汗液中表达的皮质醇进行的特异性研究显示,乳酸氧化酶呈阴性反应。在连续的乳酸传感研究中,传感器对高达 138.6mM 的乳酸浓度具有响应。发现传感器响应与实际乳酸浓度(1.3-113.4mM)之间的相关性为 0.955。