E.L. Ginzton Laboratory and Department of Electrical Engineering, Stanford University, Stanford, CA 94305, USA.
E.L. Ginzton Laboratory and Department of Electrical Engineering, Stanford University, Stanford, CA 94305, USA; Advanced Center for Laser Science and Spectroscopy, Department of Physics, Hampton University, Hampton, VA 23668, USA.
Biosens Bioelectron. 2015 Feb 15;64:30-5. doi: 10.1016/j.bios.2014.08.035. Epub 2014 Aug 22.
We present a label-free, optical sensor for biomedical applications based on changes in the visible photoluminescence (PL) of quantum dots in a thin polymer film. Using glucose as the target molecule, the screening of UV excitation due to pre-absorption by the product of an enzymatic assay leads to quenching of the PL of quantum dots (QDs) in a non-contact scheme. The irradiance changes in QD PL indicate quantitatively the level of glucose present. The non-contact nature of the assay prevents surface degradation of the QDs, which yields an efficient, waste-free, cost-effective, portable, and sustainable biosensor with attractive market features. The limit of detection of the demonstrated biosensor is ~3.5 µm, which is competitive with existing contact-based bioassays. In addition, the biosensor operates over the entire clinically relevant range of glucose concentrations of biological fluids including urine and whole blood. The comparable results achieved across a range of cost-affordable detectors, including a spectrophotometer, portable spectrometer, and iPhone camera, suggest that label-free and visible quantification of glucose with QD films can be applied to low-cost, point-of-care biomedical sensing as well as scientific applications in the laboratory for characterizing glucose or other analytes.
我们提出了一种基于在薄聚合物膜中的量子点的可见光致发光(PL)变化的用于生物医学应用的无标记、光学传感器。使用葡萄糖作为靶分子,由于酶测定的产物的预吸收导致的紫外激发的筛选导致量子点(QD)的 PL 猝灭以实现非接触式方案。QD PL 的辐照度变化定量地指示存在的葡萄糖水平。测定的非接触式性质防止了 QD 的表面降解,从而产生了具有有吸引力的市场特征的高效、无废物、经济高效、便携式和可持续的生物传感器。所展示的生物传感器的检测限约为~3.5 µm,与现有的接触式生物测定法具有竞争力。此外,该生物传感器在包括尿液和全血在内的生物流体的整个临床相关葡萄糖浓度范围内运行。在一系列具有成本效益的探测器(包括分光光度计、便携式分光光度计和 iPhone 摄像头)上获得的可比结果表明,QD 薄膜的无标记和可见定量葡萄糖可以应用于低成本、即时医疗生物传感以及实验室中用于表征葡萄糖或其他分析物的科学应用。