Lee Sang Hyun, Dang Dung Thanh, Ha Sung Ho, Chang Woo-Jin, Koo Yoon-Mo
ERC for Advanced Bioseparation Technology, Inha University, Incheon 402-751, Korea.
Biotechnol Bioeng. 2008 Jan 1;99(1):1-8. doi: 10.1002/bit.21534.
The low solubility of sugars has hampered the lipase-catalyzed synthesis of fatty acid sugar esters in organic solvents and ionic liquids (ILs), because several solvents that are able to effectively dissolve sugars are detrimental to enzymes. In this work, in order to prepare a high concentration of sugars in ILs, we have developed a new procedure that entails mixing an aqueous sugar solution into ILs followed by removal of the water from the solution. The glucose concentrations in the supersaturated [Emim][TfO] and [Bmim][TfO] were 19 and 10 times higher, respectively, than the solubilities (6.1 and 4.8 g/L) of glucose in the ILs at 25 degrees C. Furthermore, the supersaturated glucose solutions in ILs were maintained over a long period of time without any significant loss of glucose. In ILs that were extremely supersaturated with glucose, lipase-catalyzed esterifications of glucose with vinyl laurate, and lauric acid were successfully carried out. The conversion increased from 8% to 96% at 1 day of reaction by using supersaturated solution in [Bmim][TfO] which had dissolved glucose concentration of 400% higher than its solubility, compared with the reaction using saturated glucose solution. By making the glucose concentration in ILs much higher than the solubility through our novel and simple method, the initial rate and conversion of the lipase-catalyzed reaction were significantly improved.
糖类的低溶解度阻碍了脂肪酶在有机溶剂和离子液体(ILs)中催化合成脂肪酸糖酯,因为几种能够有效溶解糖类的溶剂对酶有害。在这项工作中,为了在离子液体中制备高浓度的糖类,我们开发了一种新方法,即将糖水溶液与离子液体混合,然后从溶液中除去水分。在25℃下,过饱和的[Emim][TfO]和[Bmim][TfO]中的葡萄糖浓度分别比葡萄糖在离子液体中的溶解度(6.1和4.8 g/L)高19倍和10倍。此外,离子液体中的过饱和葡萄糖溶液能长时间保持,葡萄糖没有明显损失。在葡萄糖极度过饱和的离子液体中,成功进行了脂肪酶催化的葡萄糖与月桂酸乙烯酯以及月桂酸的酯化反应。与使用饱和葡萄糖溶液的反应相比,在[Bmim][TfO]中使用溶解葡萄糖浓度比其溶解度高400%的过饱和溶液,反应1天时转化率从8%提高到了96%。通过我们新颖且简单的方法使离子液体中的葡萄糖浓度远高于溶解度,脂肪酶催化反应的初始速率和转化率得到了显著提高。