Pokhriyal A, Lu M, Huang C S, Schulz S, Cunningham B T
Appl Phys Lett. 2010 Sep 20;97(12). doi: 10.1063/1.3485672. Epub 2010 Sep 24.
A photonic crystal substrate exhibiting resonant enhancement of multiple fluorophores has been demonstrated. The device, fabricated uniformly from plastic materials over a ∼3×5 in.(2) surface area by nanoreplica molding, utilizes two distinct resonant modes to enhance electric field stimulation of a dye excited by a λ=632.8 nm laser (cyanine-5) and a dye excited by a λ=532 nm laser (cyanine-3). Resonant coupling of the laser excitation to the photonic crystal surface is obtained for each wavelength at a distinct incident angle. Compared to detection of a dye-labeled protein on an ordinary glass surface, the photonic crystal surface exhibited a 32× increase in fluorescent signal intensity for cyanine-5 conjugated streptavidin labeling, while a 25× increase was obtained for cyanine-3 conjugated streptavidin labeling. The photonic crystal is capable of amplifying the output of any fluorescent dye with an excitation wavelength in the 532 nm<λ<633 nm range by selection of an appropriate incident angle. The device is designed for biological assays that utilize multiple fluorescent dyes within a single imaged area, such as gene expression microarrays.
已证明一种能实现多种荧光团共振增强的光子晶体衬底。该器件通过纳米复制模塑法,在约3×5英寸²的表面积上由塑料材料均匀制成,利用两种不同的共振模式来增强由λ = 632.8 nm激光激发的染料(花菁-5)和由λ = 532 nm激光激发的染料(花菁-3)的电场刺激。对于每个波长,在不同的入射角下可实现激光激发与光子晶体表面的共振耦合。与在普通玻璃表面检测染料标记的蛋白质相比,光子晶体表面对于花菁-5共轭链霉亲和素标记的荧光信号强度提高了32倍,而对于花菁-3共轭链霉亲和素标记则提高了25倍。通过选择合适的入射角,该光子晶体能够放大激发波长在532 nm < λ < 633 nm范围内的任何荧光染料的输出。该器件专为在单个成像区域内利用多种荧光染料的生物测定而设计,例如基因表达微阵列。