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首页> 外文期刊>Molecules >Immobilized Lipases on Functionalized Silica Particles as Potential Biocatalysts for the Synthesis of Fructose Oleate in an Organic Solvent/Water System
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Immobilized Lipases on Functionalized Silica Particles as Potential Biocatalysts for the Synthesis of Fructose Oleate in an Organic Solvent/Water System

机译:功能化二氧化硅颗粒上的固定化脂肪酶作为有机溶剂/水系统中合成果糖油酸酯的潜在生物催化剂

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Lipases from Thermomyces lanuginosus (TLL) and Pseudomonas fluorescens (PFL) wereimmobilized on functionalized silica particles aiming their use in the synthesis of fructose oleate in a tert ‐butyl alcohol/water system. Silica particles were chemically modified with octyl (OS), octyl plus glutaraldehyde (OSGlu), octyl plus glyoxyl(OSGlx), and octyl plus epoxy groups(OSEpx). PFL was hyperactivated on all functionalized supports (more than 100% recovered activity) using low protein loading (1 mg/g), however, for TLL, this phenomenon was observed only using octyl‐silica (OS). All prepared biocatalysts exhibited high stability by incubating in tert ‐butyl alcohol (half‐lives around 50 h at 65 °C). The biocatalysts prepared using OS and OSGlu as supports showed excellent performance in the synthesis of fructose oleate. High estersynthesis was observed when a small amount of water (1%, v/v) was added to the organic phase, allowing an ester productivity until five times (0.88–0.96 g/L.h) higher than in the absence of water (0.18–0.34 g/L.h) under fixed enzyme concentration (0.51 IU/g of solvent). Maximum ester productivity (16.1–18.1 g/L.h) was achieved for 30 min of reaction catalyzed by immobilized lipases on OS and OSGlu at 8.4 IU/mL of solvent. Operational stability tests showed satisfactory stability after four consecutive cycles of reaction.
机译:将来自嗜热霉菌(TLL)和荧光假单胞菌(PFL)的脂肪酶固定在功能化的二氧化硅颗粒上,旨在将其用于叔丁醇/水系统中果糖油酸酯的合成。二氧化硅颗粒经辛基(OS),辛基加戊二醛(OSGlu),辛基加乙二氧基(OSGlx)和辛基加环氧基(OSEpx)进行化学改性。低蛋白含量(1 mg / g)使PFL在所有功能化支持物上超活化(超过100%的恢复活性),但是对于TLL,仅使用辛基二氧化硅(OS)观察到此现象。通过在叔丁醇中孵育,所有制备的生物催化剂均显示出高稳定性(半衰期在65°C下约50 h)。使用OS和OSGlu作为载体制备的生物催化剂在果糖油酸酯的合成中显示出优异的性能。当向有机相中加入少量水(1%,v / v)时,酯合成效率很高,直到没有水(0.18-v)时,酯的生产率一直高到五倍(0.88-0.96 g / Lh)。固定酶浓度(0.51 IU / g溶剂)下的浓度为0.34 g / Lh。在8.4 IU / mL的溶剂下,在OS和OSGlu上固定化脂肪酶催化的反应30分钟可达到最大酯产率(16.1-18.1 g / L.h)。操作稳定性测试显示了连续四个反应周期后令人满意的稳定性。

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