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首页> 外文期刊>Journal of Biotechnology >Enhanced synthesis of feruloylated acylglycerols by the lipase-catalyzed transesterification of glyceryl monoferulate with different acyl donors using ionic liquids as reaction solvents
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Enhanced synthesis of feruloylated acylglycerols by the lipase-catalyzed transesterification of glyceryl monoferulate with different acyl donors using ionic liquids as reaction solvents

机译:通过使用离子液体作为反应溶剂,通过用不同的酰基供体为不同酰基供体的脂肪酶催化酯化来改变二氧化酯催化剂的合成。用不同的酰基供体作为反应溶剂

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摘要

Feruloylated acylglycerols (FAG) can be used as antioxidants and UV absorbing ingredients in food and cosmetics. In this work, FAG was prepared by the lipase-catalyzed transesterification of glyceryl monoferulate (GMF) with different acyl donors using ionic liquids (ILs) as reaction solvents. The effect of different imidazolium ILs (BF4-, PF6- and TF2N-) and acyl donors (monoacylglycerols and diacylglycerols) on the transesterification and lipase selectivity for FAG formation were compared. The effect of reaction parameters (temperature, enzyme concentration, substrates ratio and time) on the reaction were also studied. The results showed that FAG preparation can be enhanced using monoolein (MO) and distearin (DS) as acyl donors. High transesterification activity and excellent lipase selectivity for lipophilic FAG formation were achieved using [C18MIM]PF6 as reaction solvent. The activation energy to form the lipophilic FAG by transesterification using MO as an acyl donor was 37.2 kJ/mol, which was lower than that of DS (92.9 kJ/mol). The activation energy to form the hydrophilic glyceryl diferulate by the esterification of GMF with feruloyl formed by the hydrolysis of another GMF (21.5 kJ/mol) using MO as an acyl donor was lower than that of DS (61.9 kJ/mol).
机译:Feruloylated酰基甘油(FAG)可用作食品和化妆品中的抗氧化剂和UV吸收成分。在这项工作中,FAG通过使用离子液体(ILS)作为反应溶剂,用不同的酰基供体的糖酶催化剂(GMF)的脂肪酶催化酯化酯化酯化。比较了不同咪唑鎓ILS(BF4,PF6-和TF2N-)和酰基供体(单酰基甘油和二酰基甘油)对FAG形成的酯交换和脂肪酶选择性的影响。还研究了反应参数(温度,酶浓度,底物比和时间)对反应的影响。结果表明,使用单烯醇(MO)和衍生素(DS)可以增强FAG制剂作为酰基供体。使用[C18mim] PF6作为反应溶剂,实现了对亲脂性FAG形成的高酯交换活性和优异的脂肪酶选择性。使用Mo作为酰基供体的酯交换形成亲脂性FAG的活化能量为37.2kJ / mol,低于DS(92.9kJ / mol)。通过使用Mo作为酰基供体的另一种GMF(21.5kJ / mol)的水解形成的GMF与二氟酰基形成的二氟酰基的活化能量差异低于DS(61.9kJ / mol)。

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