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Enzymatic Hydrolysis of Salmon Oil by Native Lipases: Optimization of Process Parameters

机译:天然脂肪酶酶解鲑鱼油:工艺参数的优化

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摘要

In an attempt to concentrate the content of n-3 polyunsaturated fatty acids (n-3 PUFA) in the residual acylglycerol, salmon oil (n-3 PUFA content of 30.1%) was hydrolyzed with three kinds of native microbial lipases (Aspergillus niger, Rhizopus javanicus and Penicillium solitum). For each lipase, a response surface methodology was used to obtain maximum PUFA content and to optimize the parameters of enzymatic reactions with respect to important reaction variables; temperature (X-1), amount of lipases (X-2) and water/oil ratio (X-3). Based on these results, optimal reaction conditions were established. Aspergillus niger lipase was the most effective in concentrating n-3 PUFA. The degree of hydrolysis (60%) led to an increase in the docosahexaenoic acid (DHA) content from 14.4% in the original oil to 34.0% (2.4-fold enrichment) in the residual acylglycerol under optimum conditions: enzyme concentration of 500 U g(-1) oil, reaction temperature of 45 C and water/oil mass rate of 2: 1 (m/m) after 24 h reaction.
机译:为了浓缩残留酰基甘油中n-3多不饱和脂肪酸(n-3 PUFA)的含量,将鲑鱼油(n-3 PUFA含量为30.1%)用三种天然微生物脂肪酶(黑曲霉,爪哇根霉和青霉。对于每种脂肪酶,都采用响应表面方法来获得最大的PUFA含量,并针对重要的反应变量来优化酶促反应的参数。温度(X-1),脂肪酶量(X-2)和水/油比(X-3)。基于这些结果,确定了最佳反应条件。黑曲霉脂肪酶最有效地浓缩n-3 PUFA。在最佳条件下,水解度(60%)导致二十二碳六烯酸(DHA)含量从原始油中的14.4%增加到残留酰基甘油中的34.0%(富集2.4倍),酶浓度为500 U g (-1)油,反应24小时后反应温度为45℃,水/油质量比为2∶1(m / m)。

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