Instituto Interuniversitario de Investigación de Reconocimiento Molecular y Desarrollo Tecnológico (IDM), Universitat Politècnica de València, Universitat de València, Camino de Vera s/n, 46022 Valencia, Spain.
Instituto Interuniversitario de Investigación de Reconocimiento Molecular y Desarrollo Tecnológico (IDM), Universitat Politècnica de València, Universitat de València, Camino de Vera s/n, 46022 Valencia, Spain; Departamento de Química, Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain.
Biosens Bioelectron. 2019 Feb 1;126:315-323. doi: 10.1016/j.bios.2018.11.005. Epub 2018 Nov 3.
One-dimensional photonic crystal slabs are periodic optical nanostructures that produce guided-mode resonance. They couple part of the incident light into the waveguide generating bandgaps in the transmittance spectrum, whose position is sensitive to refractive index variations on their surface. In this study, we present one-dimensional photonic crystal slab biosensors based on the internal nanogrooved structure of Blu-ray disks for label-free immunosensing. We demonstrated that this polycarbonate structure coated with a critical thickness of TiO generates guided-mode resonance. Its optical behavior was established comparing it with other compact disk structures. The results were theoretically calculated and experimentally demonstrated, all them being in agreement. The bioanalytical performance of these photonic crystals was experimentally demonstrated in a model assay to quantify IgGs as well as in two immunoassays to determine the biomarkers C-reactive protein and lactate dehydrogenase (detection limits of 0.1, 87, and 13 nM, respectively). The results are promising towards the development of new low-cost, portable, and label-free optical biosensors that join these photonic crystals with dedicated bioanalytical scanners based on compact disk drives.
一维光子晶体平板是一种周期性的光学纳米结构,可产生导模共振。它们将部分入射光耦合到波导中,在透光率光谱中产生带隙,其位置对表面的折射率变化敏感。在这项研究中,我们提出了基于蓝光光盘内部纳米槽结构的无标记免疫传感一维光子晶体平板生物传感器。我们证明了这种涂覆有临界厚度 TiO 的聚碳酸酯结构会产生导模共振。通过与其他光盘结构进行比较,确定了其光学性能。结果通过理论计算和实验验证得到了证实,所有结果均一致。这些光子晶体的生物分析性能在模型测定中用于定量 IgG 的实验中以及在两种免疫测定中用于确定生物标志物 C-反应蛋白和乳酸脱氢酶(检测限分别为 0.1、87 和 13 nM)的实验中得到了证实。这些结果有望开发新的低成本、便携式和无标记的光学生物传感器,将这些光子晶体与基于光盘驱动器的专用生物分析扫描仪结合使用。