Cargando…
A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing
Effective alcohol detection represents a substantial concern not only in the context of personal and automobile safety but also in clinical settings as alcohol is a contributing factor in a wide range of health complications including various types of liver cirrhoses, strokes, and cardiovascular dis...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416945/ https://www.ncbi.nlm.nih.gov/pubmed/36132318 http://dx.doi.org/10.1039/d0na00002g |
_version_ | 1784776588905152512 |
---|---|
author | Lv, Feng Gong, Yuzhu Cao, Yingying Deng, Yaoyao Liang, Shufeng Tian, Xin Gu, Hongwei Yin, Jun-Jie |
author_facet | Lv, Feng Gong, Yuzhu Cao, Yingying Deng, Yaoyao Liang, Shufeng Tian, Xin Gu, Hongwei Yin, Jun-Jie |
author_sort | Lv, Feng |
collection | PubMed |
description | Effective alcohol detection represents a substantial concern not only in the context of personal and automobile safety but also in clinical settings as alcohol is a contributing factor in a wide range of health complications including various types of liver cirrhoses, strokes, and cardiovascular diseases. Recently, many kinds of nanomaterials with enzyme-like properties have been widely used as biosensors. Herein, we have developed a convenient detection method that combines Au@PtRu nanozymes and alcohol oxidase (AOx). We found that the Au@PtRu nanorods exhibited peroxidase-like catalytic activity that was much higher than the catalytic activities of the Au and Au@Pt nanorods. The Au@PtRu nanorod-catalyzed generation of hydroxyl radicals in the presence of H(2)O(2) was used to develop an alcohol sensor by monitoring the H(2)O(2) formed by the oxidation of alcohol to acetaldehyde in the presence of AOx. When coupled with AOx, alcohol was detected down to 23.8 μM in a buffer solution for biological assays. Notably, alcohol was successfully detected in mouse blood samples with results comparable to that from commercial alcohol meters. These results highlight the potential of the Au@PtRu nanorods with peroxidase-like activity for alcohol detection, which opens up a new avenue for nanozyme development for biomedical applications. |
format | Online Article Text |
id | pubmed-9416945 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-94169452022-09-20 A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing Lv, Feng Gong, Yuzhu Cao, Yingying Deng, Yaoyao Liang, Shufeng Tian, Xin Gu, Hongwei Yin, Jun-Jie Nanoscale Adv Chemistry Effective alcohol detection represents a substantial concern not only in the context of personal and automobile safety but also in clinical settings as alcohol is a contributing factor in a wide range of health complications including various types of liver cirrhoses, strokes, and cardiovascular diseases. Recently, many kinds of nanomaterials with enzyme-like properties have been widely used as biosensors. Herein, we have developed a convenient detection method that combines Au@PtRu nanozymes and alcohol oxidase (AOx). We found that the Au@PtRu nanorods exhibited peroxidase-like catalytic activity that was much higher than the catalytic activities of the Au and Au@Pt nanorods. The Au@PtRu nanorod-catalyzed generation of hydroxyl radicals in the presence of H(2)O(2) was used to develop an alcohol sensor by monitoring the H(2)O(2) formed by the oxidation of alcohol to acetaldehyde in the presence of AOx. When coupled with AOx, alcohol was detected down to 23.8 μM in a buffer solution for biological assays. Notably, alcohol was successfully detected in mouse blood samples with results comparable to that from commercial alcohol meters. These results highlight the potential of the Au@PtRu nanorods with peroxidase-like activity for alcohol detection, which opens up a new avenue for nanozyme development for biomedical applications. RSC 2020-02-27 /pmc/articles/PMC9416945/ /pubmed/36132318 http://dx.doi.org/10.1039/d0na00002g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Lv, Feng Gong, Yuzhu Cao, Yingying Deng, Yaoyao Liang, Shufeng Tian, Xin Gu, Hongwei Yin, Jun-Jie A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title | A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title_full | A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title_fullStr | A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title_full_unstemmed | A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title_short | A convenient detection system consisting of efficient Au@PtRu nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
title_sort | convenient detection system consisting of efficient au@ptru nanozymes and alcohol oxidase for highly sensitive alcohol biosensing |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416945/ https://www.ncbi.nlm.nih.gov/pubmed/36132318 http://dx.doi.org/10.1039/d0na00002g |
work_keys_str_mv | AT lvfeng aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT gongyuzhu aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT caoyingying aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT dengyaoyao aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT liangshufeng aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT tianxin aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT guhongwei aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT yinjunjie aconvenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT lvfeng convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT gongyuzhu convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT caoyingying convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT dengyaoyao convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT liangshufeng convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT tianxin convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT guhongwei convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing AT yinjunjie convenientdetectionsystemconsistingofefficientauptrunanozymesandalcoholoxidaseforhighlysensitivealcoholbiosensing |