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首页> 外文期刊>Applied Food Biotechnology >Lipase-Catalyzed Synthesis of Medium-Long-Medium-Type of Structured Lipids from Refined Bleached Deodorized Olein
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Lipase-Catalyzed Synthesis of Medium-Long-Medium-Type of Structured Lipids from Refined Bleached Deodorized Olein

机译:脂肪酶催化合成来自精制漂白的除臭油蛋白的中 - 长型结构化脂质的结构化脂质

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Background and objective: Medium-long-medium type of structured lipid is appropriate for the management of obesity, fat malabsorption and other metabolic disorders. No studies have been carried out on the ability of Lipozyme TL IM in two types of reaction, acidolysis and transesterification for Medium-long-medium type of structured lipids synthesis using refined bleached deodorized olein as major substrate. This study aimed to synthesize medium-long-medium type of structured lipids rich in TAG, especially with equivalent carbon number 32. Furthermore, stability of Lipozyme TL IM in acidolysis and transesterification was assessed.Materials and methods: Two methods of synthesis, transesterification (tricaprylin and refined bleached deodorized olein) and acidolysis (caprylic acid and refined bleached deodorized olein), were used to produce medium-long-medium type of structured lipid. The synthesis was catalyzed using specific sn-1,3 commercial lipase (Lipozyme TL IM). Composition of triacylglycerol substrates and products and residual activity of the enzyme were investigated.Results and conclusion: The transesterification needed approximately 4 h to achieve a maximum concentration of equivalent carbon number 32 (16.75%) this was 20 h with an equivalent carbon number 32 concentration of 16.28% for acidolysis. Lipozyme TL IM included a further stable activity for transesterification as its half-life was longer than that of acidolysis. Lipozyme TL IM was appropriate for catalyzing transesterification to produce medium-long-medium type of structured lipid rich in triacylglycerol with equivalent carbon number 32, presumably that of 1,3-dicapryoyl-2-oleoyl-sn-glycerol, compared to that for acidolysis.Conflict of interest: The authors declare no conflict of interest.
机译:背景和目的:中长介质的结构性脂质适用于肥胖,脂肪吸收和其他代谢障碍的管理。在使用由精制漂白的除臭油蛋白作为主要基材的脂肪酶的脂质合成的中长介质类型的结构化脂质合成的两种反应,酸解和酯交换的能力,没有进行研究。该研究旨在合成富含标签的中长介质的结构化脂质,特别是在等效碳编号32.此外,评估脂肪溶剂TL IM在酸解和酯交换中的稳定性。材料和方法:两种合成方法,酯交换( Tricaprylin和精制漂白的除臭油蛋白)和酸解(辛酸和精制漂白的除臭油蛋白),用于产生中介质的结构性脂质。使用特异性Sn-1,3商业脂肪酶(Lipozyme T1M)催化合成。研究了三酰基甘油底物和产物的组成和酶的残余活性。结果和结论:酯交换需要约4小时以获得最大浓度的等效碳数32(16.75%),这是20小时,其等同的碳数32浓度酸化的16.28%。 Lipozyme T1 Im包括酯交换的进一步稳定活性,因为其半衰期比酸解的半衰期长。 Lipozyme T1 Im适用于催化酯交换,以产生富含三酰基甘油的中长介质类型的结构化脂质,其等当量碳数32,与其相比,与酸溶解相比,1,3-二丙烯酰-2-油酰-4-甘油感兴趣的恐慌:作者声明没有利益冲突。

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