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A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients

Concurrent with the pandemic announcement of SARS-CoV-2 infection by the WHO, a variety of reports were published confirming the cytokine storm as the most mortal effect of the virus on the infected patients. Hence, cytokine storm as an evidenced consequence in most of the COVID-19 patients could of...

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Autores principales: Khayamian, Mohammad Ali, Parizi, Mohammad Salemizadeh, Ghaderinia, Mohammadreza, Abadijoo, Hamed, Vanaei, Shohreh, Simaee, Hossein, Abdolhosseini, Saeed, Shalileh, Shahriar, Faramarzpour, Mahsa, Naeini, Vahid Fadaei, Hoseinpour, Parisa, Shojaeian, Fatemeh, Abbasvandi, Fereshteh, Abdolahad, Mohammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042719/
https://www.ncbi.nlm.nih.gov/pubmed/35494759
http://dx.doi.org/10.1039/d1ra04298j
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author Khayamian, Mohammad Ali
Parizi, Mohammad Salemizadeh
Ghaderinia, Mohammadreza
Abadijoo, Hamed
Vanaei, Shohreh
Simaee, Hossein
Abdolhosseini, Saeed
Shalileh, Shahriar
Faramarzpour, Mahsa
Naeini, Vahid Fadaei
Hoseinpour, Parisa
Shojaeian, Fatemeh
Abbasvandi, Fereshteh
Abdolahad, Mohammad
author_facet Khayamian, Mohammad Ali
Parizi, Mohammad Salemizadeh
Ghaderinia, Mohammadreza
Abadijoo, Hamed
Vanaei, Shohreh
Simaee, Hossein
Abdolhosseini, Saeed
Shalileh, Shahriar
Faramarzpour, Mahsa
Naeini, Vahid Fadaei
Hoseinpour, Parisa
Shojaeian, Fatemeh
Abbasvandi, Fereshteh
Abdolahad, Mohammad
author_sort Khayamian, Mohammad Ali
collection PubMed
description Concurrent with the pandemic announcement of SARS-CoV-2 infection by the WHO, a variety of reports were published confirming the cytokine storm as the most mortal effect of the virus on the infected patients. Hence, cytokine storm as an evidenced consequence in most of the COVID-19 patients could offer a promising opportunity to use blood as a disease progression marker. Here, we have developed a rapid electrochemical impedance spectroscopy (EIS) sensor for quantifying the overall immune activity of the patients. Since during the cytokine storm many types of cytokines are elevated in the blood, there is no need for specific detection of a single type of cytokine and the collective behavior is just measured without any electrode functionalization. The sensor includes a monolayer graphene on a copper substrate as the working electrode (WE) which is able to distinguish between the early and severe stage of the infected patients. The charge transfer resistance (R(CT)) in the moderate and severe cases varies about 65% and 138% compared to the normal groups, respectively and a specificity of 77% and sensitivity of 100% based on ELISA results were achieved. The outcomes demonstrate a significant correlation between the total mass of the three main hypercytokinemia associated cytokines including IL-6, TNF-α and IFN-γ in patients and the R(CT) values. As an extra application, the biosensor's capability for diagnosis of COVID-19 patients was tested and a sensitivity of 92% and specificity of 50% were obtained compared to the RT-PCR results.
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spelling pubmed-90427192022-04-28 A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients Khayamian, Mohammad Ali Parizi, Mohammad Salemizadeh Ghaderinia, Mohammadreza Abadijoo, Hamed Vanaei, Shohreh Simaee, Hossein Abdolhosseini, Saeed Shalileh, Shahriar Faramarzpour, Mahsa Naeini, Vahid Fadaei Hoseinpour, Parisa Shojaeian, Fatemeh Abbasvandi, Fereshteh Abdolahad, Mohammad RSC Adv Chemistry Concurrent with the pandemic announcement of SARS-CoV-2 infection by the WHO, a variety of reports were published confirming the cytokine storm as the most mortal effect of the virus on the infected patients. Hence, cytokine storm as an evidenced consequence in most of the COVID-19 patients could offer a promising opportunity to use blood as a disease progression marker. Here, we have developed a rapid electrochemical impedance spectroscopy (EIS) sensor for quantifying the overall immune activity of the patients. Since during the cytokine storm many types of cytokines are elevated in the blood, there is no need for specific detection of a single type of cytokine and the collective behavior is just measured without any electrode functionalization. The sensor includes a monolayer graphene on a copper substrate as the working electrode (WE) which is able to distinguish between the early and severe stage of the infected patients. The charge transfer resistance (R(CT)) in the moderate and severe cases varies about 65% and 138% compared to the normal groups, respectively and a specificity of 77% and sensitivity of 100% based on ELISA results were achieved. The outcomes demonstrate a significant correlation between the total mass of the three main hypercytokinemia associated cytokines including IL-6, TNF-α and IFN-γ in patients and the R(CT) values. As an extra application, the biosensor's capability for diagnosis of COVID-19 patients was tested and a sensitivity of 92% and specificity of 50% were obtained compared to the RT-PCR results. The Royal Society of Chemistry 2021-10-25 /pmc/articles/PMC9042719/ /pubmed/35494759 http://dx.doi.org/10.1039/d1ra04298j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Khayamian, Mohammad Ali
Parizi, Mohammad Salemizadeh
Ghaderinia, Mohammadreza
Abadijoo, Hamed
Vanaei, Shohreh
Simaee, Hossein
Abdolhosseini, Saeed
Shalileh, Shahriar
Faramarzpour, Mahsa
Naeini, Vahid Fadaei
Hoseinpour, Parisa
Shojaeian, Fatemeh
Abbasvandi, Fereshteh
Abdolahad, Mohammad
A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title_full A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title_fullStr A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title_full_unstemmed A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title_short A label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening COVID-19 patients
title_sort label-free graphene-based impedimetric biosensor for real-time tracing of the cytokine storm in blood serum; suitable for screening covid-19 patients
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042719/
https://www.ncbi.nlm.nih.gov/pubmed/35494759
http://dx.doi.org/10.1039/d1ra04298j
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