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首页> 外文期刊>Journal of the American Oil Chemists' Society >Production of MLM-type structured lipids catalyzed by immobilized heterologous Rhizopus oryzae lipase.
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Production of MLM-type structured lipids catalyzed by immobilized heterologous Rhizopus oryzae lipase.

机译:固定化异源米根霉脂肪酶催化生产MLM型结构化脂质。

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摘要

This work aims to produce triacylglycerols (TAG) containing a medium-chain fatty acid (M) at positions sn-1,3 and a long-chain fatty acid (L) at sn-2 position, i.e. TAG of MLM type, by acidolysis of virgin olive oil with caprylic (C8:0) or capric (C10:0) acids, catalyzed by 1,3-selective Rhizopus oryzae heterologous lipase (rROL) immobilized in EupergitReg. C and modified sepiolite. This lipase was produced by the methylotrophic yeast Pichia pastoris. Reactions were performed at 25 and 40 degrees C, for 24 h, either in solvent-free or in n-hexane media, at a molar ratio 1:2 (olive oil:free fatty acid). Higher incorporations of C8:0 (21.6 mol%) and C10:0 (34.8 mol%) into the TAG were attained in solvent-free media, at 40 degrees C, when rROL immobilized in EupergitReg. C was used. In organic media, at 40 degrees C, only 15.9 and 14.1 mol%, incorporation of C8:0 or C10:0 were, respectively observed. Lower incorporations were attained for both acids (3.4-7.0 mol%) when native ROL (nROL) in both supports and rROL in modified sepiolite were used. rROL in EupergitReg. C maintained its activity during the first four or three 23-h batches, respectively when C8:0 (half-life time, t1/2 = 159 h) or C10:0 (t1/2 = 136 h) were used, decreasing thereafter following a time delay model.
机译:这项工作旨在生产三酰基甘油(TAG),在位置 sn -1,3处含有中链脂肪酸(M),在 sn 处含有长链脂肪酸(L)。 i> -2位,即MLM类型的TAG,是通过用1,3-选择性米根霉菌(Rhizopus oryzae)催化的辛酸(C8:0)或癸酸(C10:0)酸对初榨橄榄油进行酸解的方法固定在Eupergit Reg。 C中的异源脂肪酶(rROL)和修饰的海泡石。该脂肪酶是由甲基营养酵母 Pichia pastoris 产生的。在无溶剂或在正己烷介质中,摩尔比为1:2(橄榄油:游离脂肪酸),在25和40摄氏度下反应24小时。当将rROL固定在Eupergit Reg中时,在40°C的无溶剂介质中,C8:0(21.6 mol%)和C10:0(34.8 mol%)进入TAG的比例更高。使用 C。在有机介质中,在40摄氏度下,分别仅观察到15.9和14.1 mol%的C8:0或C10:0的结合。当使用两种载体中的天然ROL(nROL)和改性海泡石中的rROL时,两种酸的掺入量都较低(3.4-7.0 mol%)。 Eupergit Reg。 C中的rROL分别在前四个或三个23小时批次中分别在C8:0(半衰期 t < / i> 1/2 = 159小时)或C10:0( t 1/2 = 136小时),此后随着时间延迟模型。

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