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Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress

An elevated level of 8-oxo-7,8-dihydro-2′-deoxyguanosine (8-oxo-dG) in biosamples has been found to correlate to oxidative stress, and it has been assigned as a critical biomarker of various diseases. Herein, insights into the mechanisms of an aptasensor, based on citrate-capped gold nanoparticles (...

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Autores principales: Choodet, Cherdpong, Toomjeen, Pakawat, Phanchai, Witthawat, Matulakul, Piyaporn, Thanan, Raynoo, Sakonsinsiri, Chadamas, Puangmali, Theerapong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064585/
https://www.ncbi.nlm.nih.gov/pubmed/35520541
http://dx.doi.org/10.1039/c9ra01497g
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author Choodet, Cherdpong
Toomjeen, Pakawat
Phanchai, Witthawat
Matulakul, Piyaporn
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
author_facet Choodet, Cherdpong
Toomjeen, Pakawat
Phanchai, Witthawat
Matulakul, Piyaporn
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
author_sort Choodet, Cherdpong
collection PubMed
description An elevated level of 8-oxo-7,8-dihydro-2′-deoxyguanosine (8-oxo-dG) in biosamples has been found to correlate to oxidative stress, and it has been assigned as a critical biomarker of various diseases. Herein, insights into the mechanisms of an aptasensor, based on citrate-capped gold nanoparticles (AuNPs), for 8-oxo-dG detection were elucidated using molecular dynamics (MD) simulations and validated experimentally. We found that the binding mechanism for binding between the anti-8-oxo-dG aptamer and 8-oxo-dG has the following characteristic stages: (i) adsorption stage, (ii) binding stage, and (iii) complex stabilization stage. Our simulations also reveal the binding sites between the anti-8-oxo-dG aptamer and 8-oxo-dG formed through hydrogen bonding during complex formation. A shortened anti-8-oxo-dG-aptamer was also engineered using in silico design, which was expected to improve the analytical performance of the colorimetric aptasensor. The mechanisms of the colorimetric aptasensor in the presence and absence of 8-oxo-dG were also investigated, and found to be in good agreement with the experiments. Complete understanding of the mechanism of the colorimetric aptasensor would open the door for development of novel naked-eye aptasensors.
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spelling pubmed-90645852022-05-04 Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress Choodet, Cherdpong Toomjeen, Pakawat Phanchai, Witthawat Matulakul, Piyaporn Thanan, Raynoo Sakonsinsiri, Chadamas Puangmali, Theerapong RSC Adv Chemistry An elevated level of 8-oxo-7,8-dihydro-2′-deoxyguanosine (8-oxo-dG) in biosamples has been found to correlate to oxidative stress, and it has been assigned as a critical biomarker of various diseases. Herein, insights into the mechanisms of an aptasensor, based on citrate-capped gold nanoparticles (AuNPs), for 8-oxo-dG detection were elucidated using molecular dynamics (MD) simulations and validated experimentally. We found that the binding mechanism for binding between the anti-8-oxo-dG aptamer and 8-oxo-dG has the following characteristic stages: (i) adsorption stage, (ii) binding stage, and (iii) complex stabilization stage. Our simulations also reveal the binding sites between the anti-8-oxo-dG aptamer and 8-oxo-dG formed through hydrogen bonding during complex formation. A shortened anti-8-oxo-dG-aptamer was also engineered using in silico design, which was expected to improve the analytical performance of the colorimetric aptasensor. The mechanisms of the colorimetric aptasensor in the presence and absence of 8-oxo-dG were also investigated, and found to be in good agreement with the experiments. Complete understanding of the mechanism of the colorimetric aptasensor would open the door for development of novel naked-eye aptasensors. The Royal Society of Chemistry 2019-06-04 /pmc/articles/PMC9064585/ /pubmed/35520541 http://dx.doi.org/10.1039/c9ra01497g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Choodet, Cherdpong
Toomjeen, Pakawat
Phanchai, Witthawat
Matulakul, Piyaporn
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title_full Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title_fullStr Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title_full_unstemmed Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title_short Combined in silico and in vitro study of an aptasensor based on citrate-capped AuNPs for naked-eye detection of a critical biomarker of oxidative stress
title_sort combined in silico and in vitro study of an aptasensor based on citrate-capped aunps for naked-eye detection of a critical biomarker of oxidative stress
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064585/
https://www.ncbi.nlm.nih.gov/pubmed/35520541
http://dx.doi.org/10.1039/c9ra01497g
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