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Review

Overview of Recent Advances in Immobilisation Techniques for Phenol Oxidases in Solution

1
Department of Chemical Sciences, University of Johannesburg, Doornfontein 2028, South Africa
2
Department of Rural Engineering and Water & Forest, Institut Polytechnique Rural de Formation et de Recherche Appliquée de Katibougou, Koulikoro BP 06, Mali
*
Author to whom correspondence should be addressed.
Catalysts 2020, 10(5), 467; https://doi.org/10.3390/catal10050467
Submission received: 20 March 2020 / Revised: 10 April 2020 / Accepted: 10 April 2020 / Published: 25 April 2020
(This article belongs to the Special Issue Biocatalysts and Their Environmental Applications)

Abstract

Over the past two decades, phenol oxidases, particularly laccases and tyrosinases, have been extensively used for the removal of numerous pollutants in wastewaters due to their broad substrate specificity and their ability to use readily accessible molecular oxygen as the essential cofactor. As for other enzymes, immobilisation of laccases and tyrosinases has been shown to improve the performance and efficiency of the biocatalysts in solution. Several reviews have addressed the enzyme immobilisation techniques and the application of phenol oxidases to decontaminate wastewaters. This paper offers an overview of the recent publications, mainly from 2012 onwards, on the various immobilisation techniques applied to laccases and tyrosinases to induce and/or increase the performance of the biocatalysts. In this paper, the emphasis is on the efficiencies achieved, in terms of structural modifications, stability and resistance to extreme conditions (pH, temperature, inhibitors, etc.), reactivity, reusability, and broad substrate specificity, particularly for application in bioremediation processes. The advantages and disadvantages of several enzyme immobilisation techniques are also discussed. The relevance and effectiveness of the immobilisation techniques with respect to wastewater decontamination are critically assessed. A perspective on the future directions for large-scale application of the phenol oxidases in immobilised forms is provided.
Keywords: immobilisation techniques; inhibitors; laccases; stability; tyrosinases; wastewater decontamination immobilisation techniques; inhibitors; laccases; stability; tyrosinases; wastewater decontamination

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MDPI and ACS Style

Ndlovu, T.; Ba, S.; Malinga, S.P. Overview of Recent Advances in Immobilisation Techniques for Phenol Oxidases in Solution. Catalysts 2020, 10, 467. https://doi.org/10.3390/catal10050467

AMA Style

Ndlovu T, Ba S, Malinga SP. Overview of Recent Advances in Immobilisation Techniques for Phenol Oxidases in Solution. Catalysts. 2020; 10(5):467. https://doi.org/10.3390/catal10050467

Chicago/Turabian Style

Ndlovu, Thandanani, Sidy Ba, and Soraya P Malinga. 2020. "Overview of Recent Advances in Immobilisation Techniques for Phenol Oxidases in Solution" Catalysts 10, no. 5: 467. https://doi.org/10.3390/catal10050467

APA Style

Ndlovu, T., Ba, S., & Malinga, S. P. (2020). Overview of Recent Advances in Immobilisation Techniques for Phenol Oxidases in Solution. Catalysts, 10(5), 467. https://doi.org/10.3390/catal10050467

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