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Enzymatic enrichment of polyunsaturated fatty acids using novel lipase preparations modified by combination of immobilization and fish oil treatment

机译:使用固定化和鱼油处理相结合的新型脂肪酶制剂酶促富集多不饱和脂肪酸

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摘要

Novel modification methods for lipase biocatalysts effective in hydrolysis of fish oil for enrichment of polyunsaturated fatty acids (PUFAs) were described. Based on conventional immobilization in single aqueous medium, immobilization of lipase in two phase medium composed of buffer and octane was employed. Furthermore, immobilization (in single aqueous or in two phase medium) coupled to fish oil treatment was integrated. Among these, lipase immobilized in two phase medium coupled to fish oil treatment (IMLAOF) had advantages over other modified lipases in initial reaction rate and hydrolysis degree. The hydrolysis degree increased from 12% with the free lipase to 40% with IMLAOF. Strong polar and hydrophobic solvents had negative impact on immobilization-fish oil treatment lipases, while low polar solvents were helpful to maintain the modification effect of immobilization-fish oil treatment. After five cycles of usage, the immobilization-fish oil treatment lipases still maintained more than 80% of relative hydrolysis degree.
机译:描述了有效地水解鱼油以富集多不饱和脂肪酸(PUFA)的脂肪酶生物催化剂的新型修饰方法。基于常规在单一水性介质中的固定化,采用脂肪酶在由缓冲液和辛烷组成的两相介质中的固定化。此外,整合了与鱼油处理结合的固定化(在单水相或两相介质中)。其中,固定在两相介质中与鱼油处理偶联的脂肪酶(IMLAOF)在初始反应速率和水解度方面优于其他修饰的脂肪酶。水解度从游离脂肪酶的12%增加到IMLAOF的40%。强极性和疏水性溶剂对固定化鱼油处理脂肪酶有负面影响,而低极性溶剂有助于保持固定化鱼油处理的修饰效果。在使用五个周期后,固定化鱼油处理脂肪酶仍保持相对水解度的80%以上。

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