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利用棕榈脂肪酸蒸馏物中的脂肪酸对碳水化合物进行生物催化酰化反应。

Biocatalytic acylation of carbohydrates with fatty acids from palm fatty acid distillates.

作者信息

Chaiyaso Thanongsak, H-Kittikun Aran, Zimmermann Wolfgang

机构信息

Department of Industrial Biotechnology, Faculty of Agro-Industry, Prince of Songkla University, 90112 Hat-Yai, Thailand.

出版信息

J Ind Microbiol Biotechnol. 2006 May;33(5):338-42. doi: 10.1007/s10295-005-0073-0. Epub 2006 Jan 10.

Abstract

Palm fatty acid distillates (PFAD) are by-products of the palm oil refining process. Their use as the source of fatty acids, mainly palmitate, for the biocatalytic synthesis of carbohydrate fatty acid esters was investigated. Esters could be prepared in high yields from unmodified acyl donors and non-activated free fatty acids obtained from PFAD with an immobilized Candida antarctica lipase preparation. Acetone was found as a compatible non-toxic solvent, which gave the highest conversion yields in a heterogeneous reaction system without the complete solubilization of the sugars. Glucose, fructose, and other acyl acceptors could be employed for an ester synthesis with PFAD. The synthesis of glucose palmitate was optimized with regard to the water activity of the reaction mixture, the reaction temperature, and the enzyme concentration. The ester was obtained with 76% yield from glucose and PFAD after reaction for 74 h with 150 U ml(-1) immobilized lipase at 40 degrees C in acetone.

摘要

棕榈脂肪酸蒸馏物(PFAD)是棕榈油精炼过程的副产品。研究了将其用作脂肪酸(主要是棕榈酸)来源,用于碳水化合物脂肪酸酯的生物催化合成。使用固定化的南极假丝酵母脂肪酶制剂,可从PFAD获得的未修饰酰基供体和未活化的游离脂肪酸高产率地制备酯。发现丙酮是一种相容的无毒溶剂,在非均相反应体系中,它能在糖不完全溶解的情况下给出最高的转化率。葡萄糖、果糖和其他酰基受体可用于与PFAD进行酯合成。关于反应混合物的水分活度、反应温度和酶浓度,对葡萄糖棕榈酸酯的合成进行了优化。在40℃下于丙酮中用150 U ml(-1)固定化脂肪酶反应74小时后,由葡萄糖和PFAD以76%的产率获得该酯。

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