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监测脂肪酶活性的基本策略:综述。

Basic strategies for monitoring lipase activity: A review.

机构信息

Laboratory of Biochemistry and Enzymatic Engineering of Lipases, Department of Biology, National Engineering School of Sfax (ENIS), 3038, University of Sfax, Tunisia.

Laboratory of Biochemistry and Enzymatic Engineering of Lipases, Department of Biology, National Engineering School of Sfax (ENIS), 3038, University of Sfax, Tunisia.

出版信息

Anal Biochem. 2025 Jan;696:115659. doi: 10.1016/j.ab.2024.115659. Epub 2024 Sep 6.

Abstract

Lipases are involved in the basic metabolism of many organisms from simple microorganisms to mammals. Moreover, these versatile biocatalysts can catalyze various types of reactions, such as esterification, interesterification, aminolysis, hydrolysis, and many important classic organic reactions under mild conditions, which play critical roles in industrial catalysis, drug discovery, and medical diagnosis of diseases. The heterogeneous nature of this catalysis requires intimate contact between them and lipid emulsion droplets. The lipolytic activity of production isolates could be determined by monitoring the release of fatty acids. Therefore, adequate monitoring of the reaction medium is critical to gain mechanistic knowledge of lipid hydrolysis in response to changes in process conditions. This review paper provides an overview of the principles underlying different strategies for monitoring lipid hydrolysis. The strengths and limitations of each method are analyzed to provide practical guidance for future research.

摘要

脂肪酶参与从简单微生物到哺乳动物等许多生物体的基本代谢。此外,这些多功能的生物催化剂可以在温和条件下催化各种类型的反应,如酯化、酯交换、氨解、水解和许多重要的经典有机反应,在工业催化、药物发现和疾病的医学诊断中发挥着关键作用。这种催化的多相性质要求它们与脂乳液滴密切接触。通过监测脂肪酸的释放,可以确定生产分离物的脂肪酶活性。因此,充分监测反应介质对于获得对反应条件变化的脂水解的机制知识至关重要。本文综述了不同监测脂水解策略的基本原理。分析了每种方法的优缺点,为今后的研究提供了实用的指导。

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