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Application of photonic crystal enhanced fluorescence to cancer biomarker microarrays.


ABSTRACT: We report on the use of photonic crystal surfaces as a high-sensitivity platform for detection of a panel of cancer biomarkers in a protein microarray format. The photonic crystal surface is designed to provide an optical resonance at the excitation wavelength of cyanine-5 (Cy5), thus providing an increase in fluorescent intensity for Cy5-labeled analytes measured with a confocal microarray scanner, compared to a glass surface. The sandwich enzyme-linked immunosorbent assay (ELISA) is undertaken on a microarray platform to undertake a simultaneous, multiplex analysis of 24 antigens on a single chip. Our results show that the resonant excitation effect increases the signal-to-noise ratio by 3.8- to 6.6-fold, resulting in a decrease in detection limits of 6-89%, with the exact enhancement dependent upon the antibody-antigen interaction. Dose-response characterization of the photonic crystal antibody microarrays shows the capability to detect common cancer biomarkers in the <2 pg/mL concentration range within a mixed sample.

SUBMITTER: Huang CS 

PROVIDER: S-EPMC3039034 | biostudies-literature | 2011 Feb

REPOSITORIES: biostudies-literature

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Application of photonic crystal enhanced fluorescence to cancer biomarker microarrays.

Huang Cheng-Sheng CS   George Sherine S   Lu Meng M   Chaudhery Vikram V   Tan Ruimin R   Zangar Richard C RC   Cunningham Brian T BT  

Analytical chemistry 20110121 4


We report on the use of photonic crystal surfaces as a high-sensitivity platform for detection of a panel of cancer biomarkers in a protein microarray format. The photonic crystal surface is designed to provide an optical resonance at the excitation wavelength of cyanine-5 (Cy5), thus providing an increase in fluorescent intensity for Cy5-labeled analytes measured with a confocal microarray scanner, compared to a glass surface. The sandwich enzyme-linked immunosorbent assay (ELISA) is undertaken  ...[more]

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