Luminescent Device for the Detection of Oxidative Stress Biomarkers in Artificial Urine
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Open Access Color
BRONZE
Green Open Access
Yes
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Publicly Funded
No
Abstract
A luminescent paper-based device for the visual detection of oxidative stress biomarkers is reported. The device consists of a polyvinylidene fluoride membrane impregnated with poly(3-alkoxy-4-methylthiophene) (PT) for colorimetric detection. 8-hydroxy-2′-deoxyguanosine (8-OHdG), a biomarker associated with oxidative stress, is used as a model system for validating the proposed methodology. The detection strategy is based on monitoring the changes in optical properties of PT associated with its conformational changes upon interaction with an aptamer in the presence and in the absence of 8-OHdG. Fluorometric and colorimetric monitoring revealed linear responses for 8-OHdG concentrations between 50 pM and 500 nM (∼14 pg/mL to 140 ng/mL), with limits of detection of ∼300 pM and ∼350 pM, respectively for (n = 3). Colorimetric responses in artificial urine ascertained rapid, sensitive, and selective detection of 8-OHdG at clinically relevant (pM to nM) concentration levels. Furthermore, the proposed methodology enables point-of-care diagnostics for oxidative stress without requiring sophisticated instrumentation.
Description
Keywords
Naked eye detection, Biomarkers, Polythiophene, Artificial urine, Oxidative stress, Deoxyguanosine, Naked eye detection, Luminescence, Deoxyguanosine, artificial urine, polythiophene, Polythiophene, paper-based biosensor, Oxidative Stress, Oxidative stress, naked eye detection, Artificial urine, oxidative stress, Colorimetry, Biomarkers, 8-OHdG
Fields of Science
02 engineering and technology, 01 natural sciences, 0104 chemical sciences, 0210 nano-technology
Citation
Ammanath, G., Yıldız, Ü. H., Palaniappan, A., and Liedberg, B. (2018). Luminescent device for the detection of oxidative stress biomarkers in artificial urine. ACS Applied Materials and Interfaces, 10(9), 7730-7736. doi:10.1021/acsami.7b17252
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OpenCitations Citation Count
31
Volume
10
Issue
9
Start Page
7730
End Page
7736
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CrossRef : 25
Scopus : 32
PubMed : 8
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