David Bianca Elizabeth, Madhurantakam Sasya, Karnam Jayanth Babu, Muthukumar Sriram, Prasad Shalini
Department of Bioengineering, The University of Texas at Dallas, Richardson, Texas 75248, United States.
EnLiSense LLC, Allen, Texas 75013, United States.
ACS Meas Sci Au. 2024 Nov 4;4(6):721-728. doi: 10.1021/acsmeasuresciau.4c00060. eCollection 2024 Dec 18.
This research aims to develop a portable biosensor device for quickly detecting vWFA2, a biomarker for inflammatory conditions. This sensor could dramatically change detection methods and lead us to improve the sensitivity of our tests to overcome the limitations of conventional detection methods. Our label-free biomolecular assay is constructed on an Au-ZnO electrode surface and uses electrochemical impedance spectroscopy (EIS) to measure the capacitive change in impedance, revealing the binding effects of the target vWFA2, to the capture probe. Our developed biosensor platform exhibits greater sensitivity and specificity, covering a wide dynamic range of 750-24,000 pg/mL and showing a strong correlation with inflammatory conditions. This sensor exhibited a greater accuracy ranging from 86-110% for the known spiked concentrations in nondiluted or modified plasma samples. This electrochemical sensor has the potential to advance point-of-care diagnostic methods due to its high sensitivity and rapid response time. The vision behind this research is to develop an electrochemical sensor that can rapidly and accurately detect disease states, thus creating a pivotal prognostic tool in inflammatory state treatment and ultimately mitigating severe mortality and morbidity.
本研究旨在开发一种便携式生物传感器设备,用于快速检测vWFA2,这是一种炎症状态的生物标志物。该传感器可显著改变检测方法,并引领我们提高检测的灵敏度,以克服传统检测方法的局限性。我们的无标记生物分子检测方法构建在金-氧化锌电极表面,并使用电化学阻抗谱(EIS)来测量阻抗的电容变化,揭示目标vWFA2与捕获探针的结合效应。我们开发的生物传感器平台具有更高的灵敏度和特异性,覆盖750-24,000 pg/mL的宽动态范围,并与炎症状态呈现出强相关性。对于未稀释或经过处理的血浆样本中已知的加标浓度,该传感器的准确度更高,范围为86-110%。这种电化学传感器因其高灵敏度和快速响应时间,具有推进即时诊断方法的潜力。本研究背后的愿景是开发一种能够快速准确检测疾病状态的电化学传感器,从而在炎症状态治疗中创建一种关键的预后工具,并最终降低严重的死亡率和发病率。