Laboratory of Enzyme Biotechnology, Department of Biological Applications and Technologies, University of Ioannina, 45110 Ioannina, Greece.
N Biotechnol. 2009 Oct 1;26(1-2):83-91. doi: 10.1016/j.nbt.2009.02.004. Epub 2009 Mar 14.
Biocatalytic lipophilization of hydroxycinnamic acids was performed in several BF(4)(-) and PF(6)(-) imidazolium ionic liquids using immobilized lipases. The influence of various reaction parameters on the performance of the biocatalytic process was pointed out, using as model reaction the esterification of ferulic acid. The biocatalytic lipophilization strongly depended on the ion composition of ionic liquids used. Conversions and initial reaction rates were significantly higher in PF(6)(-) as compared with BF(4)(-) ionic liquids and commonly used organic solvents. The high enzyme stability and the relative solubility of substrate versus product in PF(6)(-) ionic liquids can account for the improved synthesis of lipophilic ferulates. These lipophilic derivatives, when used at a concentration of up to 400-fold lower than the parental compound, efficiently inhibited the oxidation of isolated LDL, HDL and total serum in vitro. Moreover, it has been shown for the first time that the lipophilic ferulates improve the antioxidant efficiency of the HDL(3c) towards LDL in vitro oxidation.
采用固定化脂肪酶在几种 BF(4)(-)和 PF(6)(-)咪唑鎓离子液体中对羟基肉桂酸进行生物催化脂化反应。以阿魏酸酯化反应作为模型反应,指出了各种反应参数对生物催化过程性能的影响。生物催化脂化反应强烈依赖于所用离子液体的离子组成。与 BF(4)(-)离子液体和常用有机溶剂相比,PF(6)(-)离子液体中的转化率和初始反应速率显著更高。高酶稳定性和 PF(6)(-)离子液体中底物相对于产物的相对溶解度可以解释脂溶性阿魏酸酯的合成得到改善。这些脂溶性衍生物,当使用浓度比母体化合物低 400 倍时,有效地抑制了离体 LDL、HDL 和总血清的氧化。此外,首次表明脂溶性阿魏酸酯可提高 HDL(3c)在体外 LDL 氧化中对 LDL 的抗氧化效率。