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A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots

Currently, researchers are looking for nanomaterials with peroxidase-like activity to replace natural peroxidase enzymes. For this purpose, WS(2) quantum dots (WS(2) QDs) were synthesized via a solvothermal method, which improved the mimetic behavior. The resulting WS(2) QDs with a size of 1–1.5 nm...

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Autores principales: Haddad Irani-nezhad, Mahsa, Khataee, Alireza, Hassanzadeh, Javad, Orooji, Yasin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413195/
https://www.ncbi.nlm.nih.gov/pubmed/30769906
http://dx.doi.org/10.3390/molecules24040689
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author Haddad Irani-nezhad, Mahsa
Khataee, Alireza
Hassanzadeh, Javad
Orooji, Yasin
author_facet Haddad Irani-nezhad, Mahsa
Khataee, Alireza
Hassanzadeh, Javad
Orooji, Yasin
author_sort Haddad Irani-nezhad, Mahsa
collection PubMed
description Currently, researchers are looking for nanomaterials with peroxidase-like activity to replace natural peroxidase enzymes. For this purpose, WS(2) quantum dots (WS(2) QDs) were synthesized via a solvothermal method, which improved the mimetic behavior. The resulting WS(2) QDs with a size of 1–1.5 nm had a high fluorescence emission, dependent on the excitation wavelength. WS(2) QDs with uniform morphology showed a high catalytic effect in destroying H(2)O(2). The peroxidase-like activity of synthesized nanostructures was studied in H(2)O(2) chemical and electrochemical reduction systems. The mimetic effect of WS(2) QDs was also shown in an H(2)O(2)–rhodamine B (RB) chemiluminescence system. For this aim, a stopped-flow chemiluminescence (CL) detection system was applied. Also, in order to confirm the peroxidase-like effect of quantum dots, colorimetry and electrochemical techniques were used. In the enzymatic reaction of glucose, H(2)O(2) is one of the products which can be determined. Under optimum conditions, H(2)O(2) can be detected in the concentration range of 0–1000 nmol·L(−1), with a detection limit of 2.4 nmol·L(−1). Using this CL assay, a linear relationship was obtained between the intensity of the CL emission and glucose concentration in the range of 0.01–30 nmol·L(−1), with a limit of detection (3S) of 4.2 nmol·L(−1).
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spelling pubmed-64131952019-03-29 A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots Haddad Irani-nezhad, Mahsa Khataee, Alireza Hassanzadeh, Javad Orooji, Yasin Molecules Article Currently, researchers are looking for nanomaterials with peroxidase-like activity to replace natural peroxidase enzymes. For this purpose, WS(2) quantum dots (WS(2) QDs) were synthesized via a solvothermal method, which improved the mimetic behavior. The resulting WS(2) QDs with a size of 1–1.5 nm had a high fluorescence emission, dependent on the excitation wavelength. WS(2) QDs with uniform morphology showed a high catalytic effect in destroying H(2)O(2). The peroxidase-like activity of synthesized nanostructures was studied in H(2)O(2) chemical and electrochemical reduction systems. The mimetic effect of WS(2) QDs was also shown in an H(2)O(2)–rhodamine B (RB) chemiluminescence system. For this aim, a stopped-flow chemiluminescence (CL) detection system was applied. Also, in order to confirm the peroxidase-like effect of quantum dots, colorimetry and electrochemical techniques were used. In the enzymatic reaction of glucose, H(2)O(2) is one of the products which can be determined. Under optimum conditions, H(2)O(2) can be detected in the concentration range of 0–1000 nmol·L(−1), with a detection limit of 2.4 nmol·L(−1). Using this CL assay, a linear relationship was obtained between the intensity of the CL emission and glucose concentration in the range of 0.01–30 nmol·L(−1), with a limit of detection (3S) of 4.2 nmol·L(−1). MDPI 2019-02-14 /pmc/articles/PMC6413195/ /pubmed/30769906 http://dx.doi.org/10.3390/molecules24040689 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Haddad Irani-nezhad, Mahsa
Khataee, Alireza
Hassanzadeh, Javad
Orooji, Yasin
A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title_full A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title_fullStr A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title_full_unstemmed A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title_short A Chemiluminescent Method for the Detection of H(2)O(2) and Glucose Based on Intrinsic Peroxidase-Like Activity of WS(2) Quantum Dots
title_sort chemiluminescent method for the detection of h(2)o(2) and glucose based on intrinsic peroxidase-like activity of ws(2) quantum dots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413195/
https://www.ncbi.nlm.nih.gov/pubmed/30769906
http://dx.doi.org/10.3390/molecules24040689
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