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Recent trends and valorization of immobilization strategies and ligninolytic enzymes by industrial biotechnology

机译:工业生物技术的固定化策略和木质素分解酶的最新趋势和价值

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摘要

From the last several years ligninolytic enzymes find applications in numerous industrial processes. However, their lower catalytic efficiencies and operational stabilities limit their practical and multipurpose applications in various sectors of the current industrial processes. Dependence of lignin peroxidase (UP) on veratryl alcohol and that of manganese peroxidase (MnP) on Mn~(2+) is another limitation for these enzymes. Therefore to expand the range of natural industrial bio-catalysts, e.g., ligninolytic enzymes, significant progress related to the enzyme biotechnology has appeared and researchers have been redirecting their interests to immobilization engineering processes. Among the diverse immobilization techniques, the use of pre-existing supports (via covalent or physical coupling) and the immobilization without supports (enzyme cross-linked aggregates (CLEAs) or crystals (CLECs) are among the most promising. This review article mainly focuses on recent trends and valorization of immobilization and ligninolytic enzymes, i.e., LiP, MnP and laccase by industrial biotechnology. The information is also given on various immobilization techniques followed by a brief summary about an immobilization of LiP, MnP and laccase. The present review was also focused primarily on recent trends in ligninolytic green biotechnology to suggest the potential industrial applications of ligninolytic enzymes in various sectors of the modern industry.
机译:从最近几年开始,木质素分解酶在许多工业过程中得到应用。然而,它们较低的催化效率和操作稳定性限制了它们在当前工业过程的各个领域中的实际和多用途应用。木质素过氧化物酶(UP)对藜芦醇的依赖性和锰过氧化物酶(MnP)对Mn〜(2+)的依赖性是这些酶的另一个局限性。因此,为了扩大天然工业生物催化剂例如木质素分解酶的范围,已经出现了与酶生物技术有关的重大进展,并且研究人员已经将其兴趣转向固定化工程过程。在各种固定化技术中,使用预先存在的支持物(通过共价或物理偶联)和不使用支持物的固定化(酶交联聚集体(CLEA)或晶体(CLEC))是最有前途的。工业生物技术研究固定化和木质素分解酶LiP,MnP和漆酶的最新趋势和增值趋势,还提供了各种固定化技术的信息,然后简要概述了LiP,MnP和漆酶的固定化。它还主要关注木质素分解绿色生物技术的最新趋势,以提出木质素分解酶在现代工业各个领域中的潜在工业应用。

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