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.
Sci Rep. 2017 Oct 17;7(1):13312. doi: 10.1038/s41598-017-13684-7.
A non-faradaic label-free cortisol biosensor was demonstrated using MoS nanosheets integrated into a nanoporous flexible electrode system. Low volume (1-5 μL) sensing was achieved through use of a novel sensor stack design comprised of vertically aligned metal electrodes confining semi-conductive MoS nanosheets. The MoS nanosheets were surface functionalized with cortisol antibodies towards developing an affinity biosensor specific to the physiological relevant range of cortisol (8.16 to 141.7 ng/mL) in perspired human sweat. Sensing was achieved by measuring impedance changes associated with cortisol binding along the MoS nanosheet interface using electrochemical impedance spectroscopy. The sensor demonstrated a dynamic range from 1-500 ng/mL with a limit of detection of 1 ng/mL. A specificity study was conducted using a metabolite expressed in human sweat, Ethyl Glucuronide. Continuous dosing studies were performed during which the sensor was able to discriminate between four cortisol concentration ranges (0.5, 5, 50, 500 ng/mL) for a 3+ hour duration. Translatability of the sensor was shown with a portable form factor device, demonstrating a comparable dynamic range and limit of detection for the sensor. The device demonstrated a R correlation value of 0.998 when comparing measurements to the reported impedance values of the benchtop instrumentation.
采用集成到纳米多孔柔性电极系统中的 MoS 纳米片,展示了一种非法拉第无标记皮质醇生物传感器。通过使用由垂直排列的金属电极限制半导性 MoS 纳米片组成的新颖传感器堆叠设计,实现了低体积(1-5μL)检测。MoS 纳米片通过用皮质醇抗体进行表面功能化,针对在人汗中生理相关范围内的皮质醇(8.16 至 141.7ng/mL)开发了一种具有亲和力的生物传感器。通过使用电化学阻抗谱测量与沿着 MoS 纳米片界面的皮质醇结合相关的阻抗变化来实现检测。传感器在 1-500ng/mL 的动态范围内具有 1ng/mL 的检测限。使用在人汗中表达的代谢物乙基葡萄糖醛酸进行了特异性研究。在连续给药研究中,传感器能够在 3 小时以上的时间内区分四个皮质醇浓度范围(0.5、5、50、500ng/mL)。通过便携式外形设备展示了传感器的可转化性,该设备具有可比的动态范围和传感器的检测限。该设备在将测量值与台式仪器报告的阻抗值进行比较时,R 相关值为 0.998。