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首页> 外文期刊>Electronic Journal of Biotechnology >Enzymatic synthesis of coconut oil based wax esters by immobilized lipase EQ3 and commercial lipozyme RMIM
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Enzymatic synthesis of coconut oil based wax esters by immobilized lipase EQ3 and commercial lipozyme RMIM

机译:固定化脂肪酶EQ3和商业脂肪型椰子油基蜡酯的酶促合成RMIM

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BackgroundLiquid wax esters are widely used in cosmetic as well as pharmaceutical and other industries. The demand of organic and natural products is increasing nowadays. Coconut oil contains benefit fatty acids and has been mainly used for oil-based and moisturizer products. Liquid wax esters from coconut oil and unsaturated fatty alcohol can be synthesized by enzymatic reaction; and it is interesting for using as an alternative natural ingredient in these industries.ResultsOptimal condition for coconut oil based wax ester synthesis by immobilized lipase EQ3 was 10?U of enzyme, temperature at 30°C and molar ratio of coconut oil to oleyl alcohol at 1:3 (mol/mol) (0.33X) dissolved in isooctane for 12?h, while for Lipozyme RM IM optimal condition was 10?U of enzyme, temperature at 45°C and oil/alcohol molar ratio at 1:3 (0.33X) dissolved in isooctane for 3?h. Percentage of wax esters synthesized by both lipases reached more than 88%. Both immobilized lipases catalyzed high yield of wax esters within the 2ndbatch; after that, the immobilized lipases showed reduced activity and synthesized <60% of wax esters from the 3rdto 5thbatch. The main composition of wax esters was ~48% oleyl laurate with 10% degradation at ~250°C.ConclusionsThe liquid wax ester synthesis by commercial Lipozyme RM IM had higher effect than immobilized lipase EQ3, but both catalysts were stable within 2 batches in the optimum condition. The characteristic properties of wax esters showed potential for use as components in cosmetics and skin care products.How to citeUngcharoenwiwat P, H-Kittikun A. Enzymatic synthesis of coconut oil based wax esters by immobilized lipase EQ3 and commercial lipozyme RMIM. Electron J Biotechnol 2020;47.https://doi.org/10.1016/j.ejbt.2020.06.005.
机译:背景水蜡酯广泛用于化妆品以及制药和其他行业。目前有机和天然产物的需求正在增加。椰子油含有益处脂肪酸,主要用于油基和保湿霜。通过酶反应可以合成来自椰子油和不饱和脂肪醇的液蜡酯;并且在这些产业中使用作为替代天然成分的替代天然成分。通过固定化脂肪酶EQ3的椰子油基蜡酯合成的优化条件为10?U酶,温度为30℃,摩尔油与油醇的摩尔比。将1:3(mol / mol)(0.33x)溶解在异辛烷中以进行12μl,同时对于脂肪酶Rm Im最佳条件为10〜酶,温度为45℃,油/醇摩尔比在1:3时( 0.33x)溶解在异辛烷中3μl。两种脂肪酶合成的蜡酯的百分比达到88%以上。固定化脂肪酶均在2ndbatch内催化蜡酯的高产率;之后,固定化的脂肪酶显示出可减少的活性,合成来自第3至第5次的60%的蜡酯。蜡酯的主要成分为〜250℃的10%降解的蜡酯的主要组成〜250℃的10%降解。通过商用脂肪酶RM液蜡酯合成比固定化脂肪酶EQ3具有更高的效果,但两种催化剂在2批内均稳定最佳条件。蜡酯的特性特性显示用作化妆品和护肤产品中的组分。通过固定化脂肪酶EQ3和商业脂肪酶RMIM来致癌物质和皮肤护理产品中的组分。电子j biotechnol 2020; 47.https://doi.org/10.1016/j.ejbt.2020.06.005。

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