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真菌多糖作为一种吸水材料,在利用里氏木霉脂肪酶生产酯类中的应用。

Fungal polysaccharides as a water-adsorbing material in esters production with the use of lipase from Rhizomucor variabilis.

机构信息

Department of Biochemistry, Maria Curie-Sklodowska University, Akademicka 19, 20-033 Lublin, Poland.

Department of Biochemistry, Maria Curie-Sklodowska University, Akademicka 19, 20-033 Lublin, Poland.

出版信息

Int J Biol Macromol. 2018 Oct 15;118(Pt A):957-964. doi: 10.1016/j.ijbiomac.2018.06.162. Epub 2018 Jun 30.

Abstract

The extracellular crude Rhizomucor variabilis lipase was used for synthesis of flavor ester butyl caprylate and 1-butyl oleate often used as a diesel additive, a polyvinyl chloride plasticizer, a water-resisting agent, and an additive to hydraulic fluids. The influence of various reaction parameters such as the molar ratio, time, enzyme and substrate concentration, and effect of various fungal polysaccharides was estimated. The rate of catalyzed synthesis of esters largely depends on the solvent medium, and the maximum activity was found when n-hexane was used as a solvent. The maximum conversion yield of 58.2% and 59.3% was obtained for butyl caprylate and butyl oleate, respectively, under the following conditions: amount of free lipase 500 U; caprylic acid:butanol molar ratio 1:1; oleic acid:butanol molar ratio 2:1. The addition of naturally obtained fungal polysaccharides significantly enhanced the ester synthesis. The highest conversion rate of 95.2% was observed for butyl caprylate in the presence of AbEPS after 24 h with 500 U of free R. variabilis lipase. In the case of butyl oleate synthesis in the presence of LsPS, a maximum conversion yield of 91.2% was observed after the 24-h reaction.

摘要

将变根毛霉胞外粗酶用于合成常用作柴油添加剂、聚氯乙烯增塑剂、防水剂和液压油添加剂的丁酸辛酯和油酸丁酯。估计了各种反应参数(如摩尔比、时间、酶和底物浓度)以及各种真菌多糖的影响。酯的催化合成速率在很大程度上取决于溶剂介质,当使用正己烷作为溶剂时,发现最大活性。在以下条件下,丁酸辛酯和油酸丁酯的转化率分别达到 58.2%和 59.3%的最大值:游离脂肪酶量 500 U;辛酸:正丁醇摩尔比 1:1;油酸:正丁醇摩尔比 2:1。天然获得的真菌多糖的添加显著增强了酯的合成。在 24 小时内,在 500 U 游离 R. variabilis lipase 的存在下,AbEPS 存在下丁酸辛酯的转化率最高为 95.2%。在 LsPS 存在下合成丁酸辛酯时,在 24 小时的反应后观察到最大转化率为 91.2%。

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