Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination
An electrochemical biosensor based on chitosan- and thioctic-acid-modified nanoporous gold (NPG) co-immobilization glycerol kinase (GK) and glycerol-3-phosphate oxidase (GPO) was constructed for glycerol determination in wine. The NPG, with the properties of porous microstructure, large specific sur...
| Published in: | Chemosensors |
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| Main Authors: | , , , , |
| Format: | Article |
| Language: | English |
| Published: |
MDPI AG
2022-07-01
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| Online Access: | https://www.mdpi.com/2227-9040/10/7/258 |
| _version_ | 1851852813684965376 |
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| author | Caiyun Yan Kaifeng Jin Xiangyi Luo Jinhua Piao Fang Wang |
| author_facet | Caiyun Yan Kaifeng Jin Xiangyi Luo Jinhua Piao Fang Wang |
| author_sort | Caiyun Yan |
| collection | DOAJ |
| container_title | Chemosensors |
| description | An electrochemical biosensor based on chitosan- and thioctic-acid-modified nanoporous gold (NPG) co-immobilization glycerol kinase (GK) and glycerol-3-phosphate oxidase (GPO) was constructed for glycerol determination in wine. The NPG, with the properties of porous microstructure, large specific surface area, and high conductivity, was beneficial for protecting the enzyme from inactivation and denaturation and enhancing electron transfer in the modified electrode. The co-immobilization of the enzyme by chitosan-embedding and thioctic-acid-modified NPG covalent bonding was beneficial for improving the catalytic performance and stability of the enzyme-modified electrode. Ferrocene methanol (Fm) was used as a redox mediator to accelerate the electron transfer rate of the enzyme-modified electrode. The fabricated biosensor exhibited a wide determination range of 0.1–5 mM, low determination limit of 77.08 μM, and high sensitivity of 9.17 μA mM<sup>−1</sup>. Furthermore, it possessed good selectivity, repeatability, and stability, and could be used for the determination of glycerol in real wine samples. This work provides a simple and novel method for the construction of biosensors, which may be helpful to the application of enzymatic biosensors in different determination scenarios. |
| format | Article |
| id | doaj-art-603bab8fc1224b419fc15ccfa99b0bee |
| institution | Directory of Open Access Journals |
| issn | 2227-9040 |
| language | English |
| publishDate | 2022-07-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-603bab8fc1224b419fc15ccfa99b0bee2025-08-19T22:23:51ZengMDPI AGChemosensors2227-90402022-07-0110725810.3390/chemosensors10070258Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol DeterminationCaiyun Yan0Kaifeng Jin1Xiangyi Luo2Jinhua Piao3Fang Wang4School of Food Science and Engineering, South China University of Technology, Guangzhou 510641, ChinaSchool of Life Science, Jilin University, Changchun 130012, ChinaDepartment of Mathematics, Northeast Forestry University, Harbin 150040, ChinaSchool of Food Science and Engineering, South China University of Technology, Guangzhou 510641, ChinaSchool of Environmental Engineering and Chemistry, Luoyang Institute of Science and Technology, Luoyang 471023, ChinaAn electrochemical biosensor based on chitosan- and thioctic-acid-modified nanoporous gold (NPG) co-immobilization glycerol kinase (GK) and glycerol-3-phosphate oxidase (GPO) was constructed for glycerol determination in wine. The NPG, with the properties of porous microstructure, large specific surface area, and high conductivity, was beneficial for protecting the enzyme from inactivation and denaturation and enhancing electron transfer in the modified electrode. The co-immobilization of the enzyme by chitosan-embedding and thioctic-acid-modified NPG covalent bonding was beneficial for improving the catalytic performance and stability of the enzyme-modified electrode. Ferrocene methanol (Fm) was used as a redox mediator to accelerate the electron transfer rate of the enzyme-modified electrode. The fabricated biosensor exhibited a wide determination range of 0.1–5 mM, low determination limit of 77.08 μM, and high sensitivity of 9.17 μA mM<sup>−1</sup>. Furthermore, it possessed good selectivity, repeatability, and stability, and could be used for the determination of glycerol in real wine samples. This work provides a simple and novel method for the construction of biosensors, which may be helpful to the application of enzymatic biosensors in different determination scenarios.https://www.mdpi.com/2227-9040/10/7/258electrochemical biosensorglycerolnanoporous goldglycerol kinaseglycerol-3-phosphate oxidase |
| spellingShingle | Caiyun Yan Kaifeng Jin Xiangyi Luo Jinhua Piao Fang Wang Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination electrochemical biosensor glycerol nanoporous gold glycerol kinase glycerol-3-phosphate oxidase |
| title | Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination |
| title_full | Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination |
| title_fullStr | Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination |
| title_full_unstemmed | Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination |
| title_short | Electrochemical Biosensor Based on Chitosan- and Thioctic-Acid-Modified Nanoporous Gold Co-Immobilization Enzyme for Glycerol Determination |
| title_sort | electrochemical biosensor based on chitosan and thioctic acid modified nanoporous gold co immobilization enzyme for glycerol determination |
| topic | electrochemical biosensor glycerol nanoporous gold glycerol kinase glycerol-3-phosphate oxidase |
| url | https://www.mdpi.com/2227-9040/10/7/258 |
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