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Immobilization of lipase from Thermomyces lanuginosus and its Glycerolysis ability in diacylglycerol preparation


Citation

Xie, Rui and Lee, Yee Ying and Xie, Pengkai and Tan, Chin Ping (2024) Immobilization of lipase from Thermomyces lanuginosus and its Glycerolysis ability in diacylglycerol preparation. Molecules, 29 (17). art. no. 4141. ISSN 1420-3049; eISSN: 1420-3049

Abstract

In the glycerolysis process for diacylglycerol (DAG) preparation, free lipases suffer from poor stability and the inability to be reused. To address this, a cost-effective immobilized lipase preparation was developed by cross-linking macroporous resin with poly (ethylene glycol) diglycidyl ether (PEGDGE) followed by lipase adsorption. The selected immobilization conditions were identified as pH 7.0, 35 °C, cross-linking agent concentration 2.0%, cross-linking time 4 h, lipase amount 5 mg/g of support, and adsorption time 4 h. Enzymatic properties of the immobilized lipase were analyzed, revealing enhanced pH stability, thermal stability, storage stability, and operational stability post-immobilization. The conditions for immobilized enzyme-catalyzed glycerolysis to produce DAG were selected, demonstrating the broad applicability of the immobilized lipase. The immobilized lipase catalyzed glycerolysis reactions using various oils as substrates, with DAG content in the products ranging between 35 and 45%, demonstrating broad applicability. Additionally, the changes during the repeated use of the immobilized lipase were characterized, showing that mechanical damage, lipase leakage, and alterations in the secondary structure of the lipase protein contributed to the decline in catalytic activity over time. These findings provide valuable insights for the industrial application of lipase.


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Official URL or Download Paper: https://www.mdpi.com/1420-3049/29/17/4141

Additional Metadata

Item Type: Article
Divisions: Faculty of Food Science and Technology
DOI Number: https://doi.org/10.3390/molecules29174141
Publisher: Multidisciplinary Digital Publishing Institute (MDPI)
Keywords: Biocatalysis; Catalytic stability; Enzyme stability; Lipase immobilizationbiocatalysis; Catalytic stability; Enzyme stability; Lipase immobilization
Depositing User: Ms. Che Wa Zakaria
Date Deposited: 13 Jan 2025 06:33
Last Modified: 13 Jan 2025 06:33
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.3390/molecules29174141
URI: http://psasir.upm.edu.my/id/eprint/114277
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