Mathias Patrick C, Wu Hsin-Yu, Cunningham Brian T
Appl Phys Lett. 2009 Jul 13;95(2):21111. doi: 10.1063/1.3184573. Epub 2009 Jul 17.
Surface-bound fluorescence assays such as microarrays have emerged as a prominent technology in current life sciences research and are currently performed on optically passive substrates such as glass microscope slides. We present an alternative approach using photonic crystal substrates exhibiting resonant reflections. In this work, we design and fabricate a photonic crystal with a TM-polarized resonance at the cyanine-5 excitation wavelength and a TE-polarized resonance spectrally overlapping this fluorophore's emission spectrum. The former resonance increases the excitation of the fluorophore through enhanced electric field intensities, while the latter resonance redirects a proportion of emitted light toward the detection instrumentation. Spots of cyanine-5 conjugated streptavidin on the photonic crystal demonstrate a 60-fold increase in fluorescence intensity and a 42-fold increase in signal-to-noise ratio relative to a glass slide.
诸如微阵列之类的表面结合荧光检测方法已成为当前生命科学研究中的一项突出技术,目前是在诸如玻璃显微镜载玻片等光学无源基板上进行的。我们提出了一种使用具有共振反射的光子晶体基板的替代方法。在这项工作中,我们设计并制造了一种光子晶体,它在花菁-5激发波长处具有TM偏振共振,并且TE偏振共振在光谱上与该荧光团的发射光谱重叠。前者的共振通过增强电场强度来增加荧光团的激发,而后者的共振将一部分发射光重定向到检测仪器。相对于玻璃载玻片,光子晶体上花菁-5共轭链霉亲和素的斑点显示荧光强度增加了60倍,信噪比增加了42倍。