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Generalized Platform for Antibody Detection using the Antibody Catalyzed Water Oxidation Pathway
Author(s) -
Mary Welch,
Nicole L. Ritzert,
Hongjun Chen,
Norah L. Smith,
Michele E. Tague,
Youyong Xu,
Barbara Baird,
Héctor D. Abruña,
Christopher K. Ober
Publication year - 2014
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/ja409598c
Subject(s) - chemistry , biosensor , hydrogen peroxide , antibody , hapten , catalysis , combinatorial chemistry , analyte , biochemistry , chromatography , immunology , biology
Infectious diseases, such as influenza, present a prominent global problem including the constant threat of pandemics that initiate in avian or other species and then pass to humans. We report a new sensor that can be specifically functionalized to detect antibodies associated with a wide range of infectious diseases in multiple species. This biosensor is based on electrochemical detection of hydrogen peroxide generated through the intrinsic catalytic activity of all antibodies: the antibody catalyzed water oxidation pathway (ACWOP). Our platform includes a polymer brush-modified surface where specific antibodies bind to conjugated haptens with high affinity and specificity. Hydrogen peroxide provides an electrochemical signal that is mediated by Resorufin/Amplex Red. We characterize the biosensor platform, using model anti-DNP antibodies, with the ultimate goal of designing a versatile device that is inexpensive, portable, reliable, and fast. We demonstrate detection of antibodies at concentrations that fall well within clinically relevant levels.

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