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Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection

In this work, we demonstrate a robust, dual marker, biosensing strategy for specific and sensitive electrochemical response of Procalcitonin and C-reactive protein in complex body fluids such as human serum and whole blood for the detection of sepsis. Enhanced sensitivity is achieved by leveraging t...

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Autores principales: Tanak, Ambalika Sanjeev, Jagannath, Badrinath, Tamrakar, Yashaswee, Muthukumar, Sriram, Prasad, Shalini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587050/
https://www.ncbi.nlm.nih.gov/pubmed/33117982
http://dx.doi.org/10.1016/j.acax.2019.100029
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author Tanak, Ambalika Sanjeev
Jagannath, Badrinath
Tamrakar, Yashaswee
Muthukumar, Sriram
Prasad, Shalini
author_facet Tanak, Ambalika Sanjeev
Jagannath, Badrinath
Tamrakar, Yashaswee
Muthukumar, Sriram
Prasad, Shalini
author_sort Tanak, Ambalika Sanjeev
collection PubMed
description In this work, we demonstrate a robust, dual marker, biosensing strategy for specific and sensitive electrochemical response of Procalcitonin and C-reactive protein in complex body fluids such as human serum and whole blood for the detection of sepsis. Enhanced sensitivity is achieved by leveraging the physicochemical properties of zinc oxide at the electrode-solution interface. Characterization techniques such as SEM, EDAX, AFM, FTIR and fluorescence microscopy were performed to ensure a suitable biosensing surface. The characteristic biomolecular interactions between the target analyte and specific capture probe is quantified through unique frequency signatures using non-faradaic electrochemical impedance spectroscopy (EIS). The developed biosensor demonstrated a detection limit of 0.10 ng mL(−1) for PCT in human serum and whole blood with an R(2) of 0.99 and 0.98 respectively. CRP demonstrated a detection limit of 0.10 μg mL(−1) in human serum and whole blood with an R(2) of 0.90 and 0.98 respectively. Cross-reactivity analysis demonstrated robust selectivity to PCT and CRP with negligible interaction to non-specific biomolecules. The novel aspect of this technology is the ability to fine-tune individual biomarkers response owing to the optimal frequency tuning capability. The developed biosensor requires an ultra-low sample volume of 10 μL without the need for sample dilution for rapid analysis. We envision the developed dual marker biosensor to be useful as a sepsis-screening device for prognostic monitoring.
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spelling pubmed-75870502020-10-27 Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection Tanak, Ambalika Sanjeev Jagannath, Badrinath Tamrakar, Yashaswee Muthukumar, Sriram Prasad, Shalini Anal Chim Acta X Article In this work, we demonstrate a robust, dual marker, biosensing strategy for specific and sensitive electrochemical response of Procalcitonin and C-reactive protein in complex body fluids such as human serum and whole blood for the detection of sepsis. Enhanced sensitivity is achieved by leveraging the physicochemical properties of zinc oxide at the electrode-solution interface. Characterization techniques such as SEM, EDAX, AFM, FTIR and fluorescence microscopy were performed to ensure a suitable biosensing surface. The characteristic biomolecular interactions between the target analyte and specific capture probe is quantified through unique frequency signatures using non-faradaic electrochemical impedance spectroscopy (EIS). The developed biosensor demonstrated a detection limit of 0.10 ng mL(−1) for PCT in human serum and whole blood with an R(2) of 0.99 and 0.98 respectively. CRP demonstrated a detection limit of 0.10 μg mL(−1) in human serum and whole blood with an R(2) of 0.90 and 0.98 respectively. Cross-reactivity analysis demonstrated robust selectivity to PCT and CRP with negligible interaction to non-specific biomolecules. The novel aspect of this technology is the ability to fine-tune individual biomarkers response owing to the optimal frequency tuning capability. The developed biosensor requires an ultra-low sample volume of 10 μL without the need for sample dilution for rapid analysis. We envision the developed dual marker biosensor to be useful as a sepsis-screening device for prognostic monitoring. Elsevier 2019-10-03 /pmc/articles/PMC7587050/ /pubmed/33117982 http://dx.doi.org/10.1016/j.acax.2019.100029 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tanak, Ambalika Sanjeev
Jagannath, Badrinath
Tamrakar, Yashaswee
Muthukumar, Sriram
Prasad, Shalini
Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title_full Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title_fullStr Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title_full_unstemmed Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title_short Non-faradaic electrochemical impedimetric profiling of procalcitonin and C-reactive protein as a dual marker biosensor for early sepsis detection
title_sort non-faradaic electrochemical impedimetric profiling of procalcitonin and c-reactive protein as a dual marker biosensor for early sepsis detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7587050/
https://www.ncbi.nlm.nih.gov/pubmed/33117982
http://dx.doi.org/10.1016/j.acax.2019.100029
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