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. 2015 Oct 26;54(44):13036-40.
doi: 10.1002/anie.201506205. Epub 2015 Sep 7.

A Photonic Crystal Protein Hydrogel Sensor for Candida albicans

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A Photonic Crystal Protein Hydrogel Sensor for Candida albicans

Zhongyu Cai et al. Angew Chem Int Ed Engl. .

Abstract

We report two-dimensional (2D) photonic crystal (PC) sensing materials that selectively detect Candida albicans (C. albicans). These sensors utilize Concanavalin A (Con A) protein hydrogels with a 2D PC embedded on the Con A protein hydrogel surface, that multivalently and selectively bind to mannan on the C. albicans cell surface to form crosslinks. The resulting crosslinks shrink the Con A protein hydrogel, reduce the 2D PC particle spacing, and blue-shift the light diffracted from the PC. The diffraction shifts can be visually monitored, measured with a spectrometer, or determined from the Debye diffraction ring diameter. Our unoptimized hydrogel sensor has a detection limit of around 32 CFU/mL for C. albicans. This sensor distinguishes between C. albicans and those microbes devoid of cell-surface mannan such as the gram-negative bacterium E. coli. This sensor provides a proof-of-concept for utilizing recognition between lectins and microbial cell surface carbohydrates to detect microorganisms in aqueous environments.

Keywords: gels; microbes; photonic crystals; proteins; sensors.

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