Literature DB >> 30243255

Immobilization of laccase on hollow mesoporous carbon nanospheres: Noteworthy immobilization, excellent stability and efficacious for antibiotic contaminants removal.

Binbin Shao1, Zhifeng Liu2, Guangming Zeng3, Yang Liu1, Xin Yang1, Chengyun Zhou1, Ming Chen1, Yujie Liu1, Yilin Jiang1, Ming Yan1.   

Abstract

In this study, the hollow mesoporous carbon spheres (HMCs) were synthesized and modified for laccase (Lac) immobilization, and the structural characteristics of HMCs materials were determined by FESEM, TEM and FTIR etc. The maximum loading of Lac on the HMCs materials could reach 835 mg/g, meanwhile, the immobilized Lac exhibited excellent thermo-stability, pH stability, storage stability and reusability. The antibiotics removal experiments indicated that the immobilized Lac possess efficient removal efficiency for both tetracycline hydrochloride (TCH) and ciprofloxacin hydrochloride (CPH) in the presence of redox mediator. The synergy of the adsorption by HMCs and the degradation by Lac could be the reasons for the high removal of antibiotics. Meanwhile, for investigating degradation mechanism, the degradation product analysis and molecular docking method had been introduced to this study. According to the degradation products, dehydroxylation and demethylation are major degradation reactions for TCH degradation, and the oxidation of the piperazinyl substituent and hydroxylation are the major degradation for CPH degradation. The docking results showed that some important residues played the key role in the degradation process. This study indicated that the immobilization of Lac on HMCs could be potentially applied in environmental remediation of antibiotics.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Antibiotics; Degradation product; Hollow mesoporous carbon spheres; Laccase immobilization; Molecular docking

Mesh:

Substances:

Year:  2018        PMID: 30243255     DOI: 10.1016/j.jhazmat.2018.08.069

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  11 in total

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Review 2.  Industrial applications of immobilized nano-biocatalysts.

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3.  Degradation of 2,4-DCP by the immobilized laccase on the carrier of sodium alginate-sodium carboxymethyl cellulose.

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Authors:  Tengfei Wang; Hui Luo; Xu Jing; Jiali Yang; Meijun Huo; Yu Wang
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Review 5.  Recent Developments in the Immobilization of Laccase on Carbonaceous Supports for Environmental Applications - A Critical Review.

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Journal:  Front Bioeng Biotechnol       Date:  2021-12-06

6.  Biomass porous carbon as the active site to enhance photodegradation of oxytetracycline on mesoporous g-C3N4.

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7.  Degradation and Detection of Endocrine Disruptors by Laccase-Mimetic Polyoxometalates.

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Review 8.  Pharmaceutical Pollution in Aquatic Environments: A Concise Review of Environmental Impacts and Bioremediation Systems.

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9.  Improved hydrogen evolution performance by engineering bimetallic AuPd loaded on amino and nitrogen functionalized mesoporous hollow carbon spheres.

Authors:  Lenan Wang; Zhankui Zhao; Hongli Wang; Yue Chi
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10.  3D Chitin Scaffolds from the Marine Demosponge Aplysina archeri as a Support for Laccase Immobilization and Its Use in the Removal of Pharmaceuticals.

Authors:  Jakub Zdarta; Tomasz Machałowski; Oliwia Degórska; Karolina Bachosz; Andriy Fursov; Hermann Ehrlich; Viatcheslav N Ivanenko; Teofil Jesionowski
Journal:  Biomolecules       Date:  2020-04-22
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