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首页> 外文期刊>Chemistry and Physics of Lipids >Synthesis of ascorbyl oleate by transesterification of olive oil with ascorbic acid in polar organic media catalyzed by immobilized lipases
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Synthesis of ascorbyl oleate by transesterification of olive oil with ascorbic acid in polar organic media catalyzed by immobilized lipases

机译:固定化脂肪酶催化极性有机介质中橄榄油与抗坏血酸的酯交换反应合成抗坏血酸油酸酯

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摘要

The reaction of transesterification between oils (e.g., olive oil) and ascorbic acid in polar anhydrous media (e.g., tert-amyl alcohol) catalyzed by immobilized lipases for the preparation of natural liposoluble antioxidants (e.g., ascorbyl oleate) was studied. Three commercial lipases were tested: Candida Antarctica B lipase (CALB), Thermomyces lanuginosus lipase (TLL) and Rhizomucor miehei lipase (RML). Each lipase was immobilized by three different protocols: hydrophobic adsorption, anionic exchange and multipoint covalent attachment. The highest synthetic yields were obtained with CALB adsorbed on hydrophobic supports (e.g., the commercial derivative Novozym 435). The rates and yields of the synthesis of ascorbyl oleate were higher when using the solvent dried with molecular sieves, at high temperatures (e.g. 45 ?C) and with a small excess of oil (2 mol of oil per mol of ascorbic acid). The coating of CALB derivatives with polyethyleneimine (PEI) improved its catalytic behavior and allowed the achievement of yields of up to 80% of ascorbyl oleate in less than 24 h. CALB adsorbed on a hydrophobic support and coated with PEI was 2-fold more stable than a non-coated derivative and one hundred-fold more stable than the best TLL derivative. The best CALB derivative exhibited a half-life of 3 days at 75 ?C in fully anhydrous media, and this derivative maintained full activity after 28 days at 45 ?C in dried tert-amyl alcohol.
机译:研究了固定化脂肪酶催化的油(例如橄榄油)和抗坏血酸在极性无水介质(例如叔戊醇)之间的酯交换反应,用于制备天然脂溶性抗氧化剂(例如抗坏血酸油酸酯)。测试了三种商业脂肪酶:南极假丝酵母B脂肪酶(CALB),羊毛嗜热霉菌脂肪酶(TLL)和米根根霉脂肪酶(RML)。每种脂肪酶通过三种不同的方法固定:疏水吸附,阴离子交换和多点共价连接。将CALB吸附在疏水性载体(例如,商品衍生物Novozym 435)上可获得最高的合成产率。当使用在高温(例如45℃)和少量过量的油(每摩尔抗坏血酸2摩尔油)下用分子筛干燥的溶剂时,抗坏血酸油酸酯的合成速率和产率较高。用聚乙烯亚胺(PEI)包覆CALB衍生物可改善其催化性能,并在不到24小时的时间内获得高达80%的抗坏血酸油酸酯的产率。吸附在疏水性载体上并涂有PEI的CALB比未涂层的衍生物稳定2倍,比最好的TLL衍生物稳定100倍。最佳的CALB衍生物在完全无水的介质中在75°C下的半衰期为3天,在45°C的干燥戊醇中28天后,该衍生物保持了完整的活性。

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