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Protein-protein binding detection with nanoparticle photonic crystal enhanced microscopy (NP-PCEM).

EMBC(2014)

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摘要
We demonstrate a novel microscopy-based biosensing approach that utilizes a photonic crystal (PC) surface to detect protein-protein binding with the functionalized nanoparticles as tags. This imaging approach utilizes the measurement of localized shifts in the resonant wavelength and resonant reflection magnitude from the PC biosensor in the presence of individual nanoparticles. Moreover, it substantially increases the sensitivity of the imaging approach through tunable localized surface plasmon resonant frequency of the nanoparticle matching with the resonance of the PC biosensor. Experimental demonstrations of photonic crystal enhanced microscopy (PCEM) imaging with single nanoparticle resolution are supported by Finite-Difference Time-Domain (FDTD) computer simulations. The ability to detect the surface adsorption of individual nanoparticles as tags offers a route to single molecule biosensing with photonic crystal biosensor in the future.
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关键词
biosensors,nanoparticles,functionalized nanoparticles,localized surface plasmon resonant frequency,nanosensors,nanobiotechnology,surface plasmon resonance,resonant reflection magnitude,adsorption,pc surface,resonant wavelength,nanoparticle photonic crystal enhanced microscopy,fdtd computer simulations,proteins,single nanoparticle resolution,photonic crystal surface,np-pcem,protein-protein binding detection,biochemistry,molecular biophysics,photonic crystals,pc biosensor,localized shift measurement,finite-difference time-domain computer simulations,finite difference time-domain analysis,pcem imaging,microscopy-based biosensing approach,surface adsorption
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