Research Progress on Immobilized Nanoenzymes

The industrial application of free enzyme is limited due to its high cost, poor operational stability and difficult reuse. Immobilization on carrier is an effective way to overcome the limitation. Nanozyme immobilization technology has emerged in the past 10 years, which is an emerging technology wi...

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Main Author: XIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei
Format: Article
Language:English
Published: China Food Publishing Company 2023-06-01
Series:Shipin Kexue
Subjects:
Online Access:https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-11-025.pdf
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author XIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei
author_facet XIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei
author_sort XIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei
collection DOAJ
description The industrial application of free enzyme is limited due to its high cost, poor operational stability and difficult reuse. Immobilization on carrier is an effective way to overcome the limitation. Nanozyme immobilization technology has emerged in the past 10 years, which is an emerging technology with great potential. At present, immobilized enzymes have been widely used in several fields such as food, medical treatment, and environmental treatment. This article systematically summarizes the latest progress in the research and application of immobilized enzymes based on three new nanomaterials (protein-inorganic hybrid nanoflowers, metal organic frameworks and nanogels), comprehensively compares the advantages and disadvantages of the three nanomaterials, analyzes and summarizes their respective applicable enzymes, and finally points out that cascade enzyme immobilization and the development of new immobilized materials are the future trend for the development of immobilized enzymes.
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spelling doaj.art-79859b1bffad41e4a6d670f5d7bd77cb2023-07-25T06:04:40ZengChina Food Publishing CompanyShipin Kexue1002-66302023-06-01441120521310.7506/spkx1002-6630-20220511-143Research Progress on Immobilized NanoenzymesXIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei0(1. School of Food Science and Engineering, Nanchang University, Nanchang 330036, China;2. College of Food Science and Engineering, South China University of Technology, Guangzhou 510000, China)The industrial application of free enzyme is limited due to its high cost, poor operational stability and difficult reuse. Immobilization on carrier is an effective way to overcome the limitation. Nanozyme immobilization technology has emerged in the past 10 years, which is an emerging technology with great potential. At present, immobilized enzymes have been widely used in several fields such as food, medical treatment, and environmental treatment. This article systematically summarizes the latest progress in the research and application of immobilized enzymes based on three new nanomaterials (protein-inorganic hybrid nanoflowers, metal organic frameworks and nanogels), comprehensively compares the advantages and disadvantages of the three nanomaterials, analyzes and summarizes their respective applicable enzymes, and finally points out that cascade enzyme immobilization and the development of new immobilized materials are the future trend for the development of immobilized enzymes.https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-11-025.pdfimmobilized enzyme; nanoflowers; metal-organic frameworks; nanogels; nanotechnology
spellingShingle XIAO Lu, ZHOU Jintao, LIU Zhen, XIONG Tao, LOU Wenyong, PENG Fei
Research Progress on Immobilized Nanoenzymes
Shipin Kexue
immobilized enzyme; nanoflowers; metal-organic frameworks; nanogels; nanotechnology
title Research Progress on Immobilized Nanoenzymes
title_full Research Progress on Immobilized Nanoenzymes
title_fullStr Research Progress on Immobilized Nanoenzymes
title_full_unstemmed Research Progress on Immobilized Nanoenzymes
title_short Research Progress on Immobilized Nanoenzymes
title_sort research progress on immobilized nanoenzymes
topic immobilized enzyme; nanoflowers; metal-organic frameworks; nanogels; nanotechnology
url https://www.spkx.net.cn/fileup/1002-6630/PDF/2023-44-11-025.pdf
work_keys_str_mv AT xiaoluzhoujintaoliuzhenxiongtaolouwenyongpengfei researchprogressonimmobilizednanoenzymes