Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface

Methods that enable the sensitive and label-free detection of protein biomarkers are well-positioned to make potentially significant contributions to diagnostics and derived personalized healthcare. In support of this goal, a myriad of (electrochemical) methodologies have been developed; recently, e...

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Egile Nagusiak: Baradoke, A, Hein, R, Li, X, Davis, JJ
Formatua: Journal article
Hizkuntza:English
Argitaratua: American Chemical Society 2020
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author Baradoke, A
Hein, R
Li, X
Davis, JJ
author_facet Baradoke, A
Hein, R
Li, X
Davis, JJ
author_sort Baradoke, A
collection OXFORD
description Methods that enable the sensitive and label-free detection of protein biomarkers are well-positioned to make potentially significant contributions to diagnostics and derived personalized healthcare. In support of this goal, a myriad of (electrochemical) methodologies have been developed; recently, electrochemical capacitance spectroscopy emerged as an impedance-derived approach which, in employing surface-confined redox-transducers, circumvents problems associated with the use of solution-phase redox-probes. Herein, we expand this scope by utilizing phytic acid-doped polyaniline as a novel redox-charging polymer support enabling the reagentless assaying of C-reactive protein in serum with good sensitivity. The construction of the sensory interface via electropolymerization allows facile tuning of the surface coverage and redox (capacitive) properties of the polymers, which, in turn, modulate both assay selectivity, fouling, and sensitivity. Significantly, this methodology is readily extendable to a wide range of electrode materials and analytes.
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spelling oxford-uuid:229d3be7-908a-447e-b36f-60528279a83e2022-03-26T11:39:43ZReagentless redox capacitive assaying of C-reactive protein at a polyaniline interfaceJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:229d3be7-908a-447e-b36f-60528279a83eEnglishSymplectic ElementsAmerican Chemical Society2020Baradoke, AHein, RLi, XDavis, JJMethods that enable the sensitive and label-free detection of protein biomarkers are well-positioned to make potentially significant contributions to diagnostics and derived personalized healthcare. In support of this goal, a myriad of (electrochemical) methodologies have been developed; recently, electrochemical capacitance spectroscopy emerged as an impedance-derived approach which, in employing surface-confined redox-transducers, circumvents problems associated with the use of solution-phase redox-probes. Herein, we expand this scope by utilizing phytic acid-doped polyaniline as a novel redox-charging polymer support enabling the reagentless assaying of C-reactive protein in serum with good sensitivity. The construction of the sensory interface via electropolymerization allows facile tuning of the surface coverage and redox (capacitive) properties of the polymers, which, in turn, modulate both assay selectivity, fouling, and sensitivity. Significantly, this methodology is readily extendable to a wide range of electrode materials and analytes.
spellingShingle Baradoke, A
Hein, R
Li, X
Davis, JJ
Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title_full Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title_fullStr Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title_full_unstemmed Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title_short Reagentless redox capacitive assaying of C-reactive protein at a polyaniline interface
title_sort reagentless redox capacitive assaying of c reactive protein at a polyaniline interface
work_keys_str_mv AT baradokea reagentlessredoxcapacitiveassayingofcreactiveproteinatapolyanilineinterface
AT heinr reagentlessredoxcapacitiveassayingofcreactiveproteinatapolyanilineinterface
AT lix reagentlessredoxcapacitiveassayingofcreactiveproteinatapolyanilineinterface
AT davisjj reagentlessredoxcapacitiveassayingofcreactiveproteinatapolyanilineinterface