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In situ embedding of glucose oxidase in amorphous ZIF-7 with high catalytic activity and stability and mechanism investigation.
Liu, Siyuan; Liu, Jingxing; Wang, Zefen; Wu, Zhiqi; Wei, Yiliang; Liu, Pengru; Lan, Xiongdiao; Liao, Yexin; Lan, Ping.
Afiliación
  • Liu S; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Liu J; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Wang Z; School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, PR China; Institute of Biological Manufacturing Technology Co. Ltd, Guangxi Institute of Industrial Technology, Nanning, Guangxi 530002, PR China.
  • Wu Z; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Wei Y; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Liu P; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Lan X; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China. Electronic address: lanxiongdiao@163.com.
  • Liao Y; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China.
  • Lan P; Guangxi Key Laboratory for Polysaccharide Materials and Modifications, Higher Education Institutes Key Laboratory for New Chemical and Biological Transformation Process Technology, Guangxi Minzu University, Nanning, Guangxi 530006, PR China. Electronic address: gxlanping@163.com.
Int J Biol Macromol ; 242(Pt 2): 124806, 2023 Jul 01.
Article en En | MEDLINE | ID: mdl-37178879
Glucose oxidase (GOx) has a great application potential in the determination of glucose concentration. However, its sensitivity to the environment and poor recyclability limited its broader application. Herein, with the assistance of DA-PEG-DA, a novel immobilized GOx based on amorphous Zn-MOFs (DA-PEG-DA/GOx@aZIF-7/PDA) was developed to impart excellent properties to the enzyme. SEM, TEM, XRD, and BET analyses confirmed that GOx was embedded in amorphous ZIF-7 with ∼5 wt% loading. Compared with free GOx, DA-PEG-DA/GOx@aZIF-7/PDA exhibited enhanced stability, excellent reusability, and promising potential for glucose detection. After 10 repetitions, the catalytic activity of DA-PEG-DA/GOx@aZIF-7/PDA can maintain 95.53 % ± 3.16 %. In understanding the in situ embedding of GOx in ZIF-7, the interaction of zinc ion and benzimidazole with GOx was studied by using molecular docking and multi-spectral methods. Results showed that zinc ions and benzimidazole had multiple binding sites on the enzyme, which induced the accelerated synthesis of ZIF-7 around the enzyme. During binding, the structure of the enzyme changes, but such changes hardly affect the activity of the enzyme. This study provides not only a preparation strategy of immobilized enzyme with high activity, high stability, and low enzyme leakage rate for glucose detection, but also a more comprehensive understanding of the formation of immobilized enzymes using the in situ embedding strategy.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Técnicas Biosensibles / Glucosa Oxidasa Idioma: En Revista: Int J Biol Macromol Año: 2023 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Técnicas Biosensibles / Glucosa Oxidasa Idioma: En Revista: Int J Biol Macromol Año: 2023 Tipo del documento: Article