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用聚乙烯亚胺包覆对Lipozyme 435的稳定化及操作选择性改变:木糖脂肪酸酯合成中生物催化剂性能的比较

Stabilization and operational selectivity alteration of Lipozyme 435 by its coating with polyethyleneimine: Comparison of the biocatalyst performance in the synthesis of xylose fatty esters.

作者信息

Gonçalves Maria Carolina Pereira, Amaral Jéssica Cristina, Lopes Laiane Antunes, Fernandez-Lafuente Roberto, Tardioli Paulo Waldir

机构信息

Postgraduate Program in Chemical Engineering, Department of Chemical Engineering, Laboratory of Enzyme Technologies (LabEnz), Federal University of São Carlos (UFSCar), Rodovia Washington Luís, km 235, 13565-905 São Carlos, SP, Brazil.

Postgraduate Program in Chemistry, Department of Chemistry, Laboratory of Natural Products, Federal University of São Carlos (UFSCar), Rodovia Washington Luís, km 235, 13565-905 São Carlos, SP, Brazil.

出版信息

Int J Biol Macromol. 2021 Dec 1;192:665-674. doi: 10.1016/j.ijbiomac.2021.10.052. Epub 2021 Oct 14.

DOI:10.1016/j.ijbiomac.2021.10.052
PMID:34656534
Abstract

Differently modified Lipozyme 435 (L435) (immobilized lipase B from Candida antarctica) preparations were used as biocatalysts in the esterification reaction to synthesize sugar fatty acid esters (SFAEs) from xylose (acyl acceptor) and lauric/palmitic acids (acyl donors) in methyl ethyl ketone (MEK) solvent. The L435 treatment with polyethyleneimine (PEI) (2; 25; and 750 KDa) prevented the enzyme leakage in the crude sugar ester reaction product. The 2 KDa PEI coating of this enzyme preparation produced the highest enzyme stability in MEK, buffer solutions (pHs 5 and 7), and methanol aqueous phosphate buffer at pH 7. Using an excess of the acyl donor (1:5 xylose: fatty acid molar ratio), high xylose conversions (70-84%) were obtained after 24 h-reaction using both, non-modified and PEI (2 KDa) coated L435, but the PEI treated biocatalyst afforded a higher xylose modification degree. After 5 reuse cycles with the L435 coated with PEI 2 KDa, the xylose conversions only decreased 10%, while with the non-treated biocatalyst they decreased by 37%. The formation of SFAEs was confirmed by mass spectrometry, which showed the presence of xylose mono-, di-, and triesters. They exhibited emulsion capacities close to that of a commercial sucrose monolaurate.

摘要

不同修饰的Lipozyme 435(L435,南极假丝酵母固定化脂肪酶B)制剂在酯化反应中用作生物催化剂,以在甲乙酮(MEK)溶剂中由木糖(酰基受体)和月桂酸/棕榈酸(酰基供体)合成糖脂肪酸酯(SFAE)。用聚乙烯亚胺(PEI)(2、25和750 kDa)处理L435可防止粗糖酯反应产物中的酶泄漏。该酶制剂的2 kDa PEI包被在MEK、缓冲溶液(pH值为5和7)以及pH值为7的甲醇磷酸盐水缓冲液中产生了最高的酶稳定性。使用过量的酰基供体(木糖与脂肪酸摩尔比为1:5),使用未修饰的和PEI(2 kDa)包被的L435在24小时反应后均获得了较高的木糖转化率(70 - 84%),但经PEI处理的生物催化剂具有更高的木糖修饰度。用2 kDa PEI包被的L435进行5次重复使用循环后,木糖转化率仅下降10%,而未处理的生物催化剂则下降了37%。通过质谱确认了SFAE的形成,质谱显示存在木糖单酯、二酯和三酯。它们的乳化能力接近市售单月桂酸蔗糖酯。

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