微生物脂肪酶的最新进展和前景及其在工业中的潜在应用。

IF 2.3 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY International Microbiology Pub Date : 2024-12-01 Epub Date: 2024-03-15 DOI:10.1007/s10123-024-00498-7
Azadeh Eskandari, Thean Chor Leow, Mohd Basyaruddin Abdul Rahman, Siti Nurbaya Oslan
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引用次数: 0

摘要

酶在各工业领域发挥着至关重要的作用。这些生物催化剂不仅能确保可持续性和安全性,还能通过其独特的特异性提高加工效率。脂肪酶作为生物催化剂具有多功能性,可用于各种生物转化反应。目前,由于酶技术的飞速发展及其在多种工业流程中的广泛应用,微生物脂肪酶正成为人们关注的焦点。这篇最新综述介绍了有关微生物脂肪酶各种来源的新知识,如真菌、细菌和酵母。它重点介绍了传统和现代的纯化方法,包括沉淀和色谱分离、免疫纯化技术、反向胶束系统、水性两相系统(ATPS)和水性两相浮选(ATPF),此外还深入探讨了微生物脂肪酶在食品、维生素酯、纺织品、洗涤剂、生物柴油和生物修复等多个行业的不同应用。此外,本研究还揭示了脂肪酶应用过程中遇到的障碍、脂肪酶工程中观察到的模式,以及应用 CRISPR/Cas 基因组编辑技术改变脂肪酶生产基因的情况。此外,将微生物脂肪酶固定在各种载体上也有助于提高脂肪酶催化活性的效果和效率。这是通过提高脂肪酶对热和离子条件(如无机溶剂、高 pH 值和温度)的适应能力来实现的。这种工艺还便于它们的回收利用,并能使酶更集中地沉积在支撑材料上。因此,这些特性证明了它们适合作为生物催化剂应用于各种行业。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent insight into the advances and prospects of microbial lipases and their potential applications in industry.

Enzymes play a crucial role in various industrial sectors. These biocatalysts not only ensure sustainability and safety but also enhance process efficiency through their unique specificity. Lipases possess versatility as biocatalysts and find utilization in diverse bioconversion reactions. Presently, microbial lipases are gaining significant focus owing to the rapid progress in enzyme technology and their widespread implementation in multiple industrial procedures. This updated review presents new knowledge about various origins of microbial lipases, such as fungi, bacteria, and yeast. It highlights both the traditional and modern purification methods, including precipitation and chromatographic separation, the immunopurification technique, the reversed micellar system, the aqueous two-phase system (ATPS), and aqueous two-phase flotation (ATPF), moreover, delves into the diverse applications of microbial lipases across several industries, such as food, vitamin esters, textile, detergent, biodiesel, and bioremediation. Furthermore, the present research unveils the obstacles encountered in employing lipase, the patterns observed in lipase engineering, and the application of CRISPR/Cas genome editing technology for altering the genes responsible for lipase production. Additionally, the immobilization of microorganisms' lipases onto various carriers also contributes to enhancing the effectiveness and efficiencies of lipases in terms of their catalytic activities. This is achieved by boosting their resilience to heat and ionic conditions (such as inorganic solvents, high-level pH, and temperature). The process also facilitates the ease of recycling them and enables a more concentrated deposition of the enzyme onto the supporting material. Consequently, these characteristics have demonstrated their suitability for application as biocatalysts in diverse industries.

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来源期刊
International Microbiology
International Microbiology 生物-生物工程与应用微生物
CiteScore
5.50
自引率
3.20%
发文量
67
审稿时长
3 months
期刊介绍: International Microbiology publishes information on basic and applied microbiology for a worldwide readership. The journal publishes articles and short reviews based on original research, articles about microbiologists and their work and questions related to the history and sociology of this science. Also offered are perspectives, opinion, book reviews and editorials. A distinguishing feature of International Microbiology is its broadening of the term microbiology to include eukaryotic microorganisms.
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