Title of article
High Ionic Strength Glucose-Sensing Photonic Crystal
Author/Authors
Asher، Sanford A. نويسنده , , Sharma، Anjal C. نويسنده , , Goponenko، Alexander V. نويسنده , , Alexeev، Vladimir L. نويسنده , , Das، Sasmita نويسنده , , Lednev، Igor K. نويسنده , , Wilcox، Craig S. نويسنده , , Finegold، David N. نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2003
Pages
-2315
From page
2316
To page
0
Abstract
We demonstrate a colorimetric glucose recognition material consisting of a crystalline colloidal array embedded within a polyacrylamide-poly(ethylene glycol) (PEG) hydrogel, or a polyacrylamide-15-crown-5 hydrogel, with pendent phenylboronic acid groups. We utilize a new molecular recognition motif, in which boronic acid and PEG (or crown ether) functional groups are prepositioned in a photonic crystal hydrogel, such that glucose self-assembles these functional groups into a supramolecular complex. The formation of the complex results in an increase in the hydrogel cross-linking, which for physiologically relevant glucose concentration blue shifts the photonic crystal diffraction. The visually evident diffraction color shifts across the visible spectral region over physiologically important glucose concentration ranges. These materials respond to glucose at physiological ionic strengths and pH values and are selective in their mode of response for glucose over galactose, mannose, and fructose. Thus, we have developed a new recognition motif for glucose that shows promise for the fabrication of noninvasive or minimally invasive in vivo glucose sensing for patients with diabetes mellitus.
Keywords
Alloys , Modelling , Friction/wear , Metal-matrix composites (MMCs) , Wear coefficient
Journal title
Analytical Chemistry
Serial Year
2003
Journal title
Analytical Chemistry
Record number
51222
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