Castillo E, Pezzotti F, Navarro A, López-Munguía A
Departamento de Bioingeniería, Instituto de Biotecnología, UNAM, Apartado Postal 510-3, Cuernavaca, Morelos 62271, Mexico.
J Biotechnol. 2003 May 8;102(3):251-9. doi: 10.1016/s0168-1656(03)00050-6.
A solvent engineering strategy was applied to the lipase-catalyzed synthesis of xylitol-oleic acid monoesters. The different esterification degrees for this polyhydroxylated molecule were examined in different organic solvent mixtures. In this context, conditions for high selectivity towards monooleoyl xylitol synthesis were enhanced from 6 mol% in pure n-hexane to 73 mol% in 2-methyl-2-propanol/dimethylsulfoxide (DMSO) 80:20 (v/v). On the contrary, the highest production of di- and trioleoyl xylitol, corresponding to 94 mol%, was achieved in n-hexane. Changes in polarity of the reaction medium and in the molecular interactions between solvents and reactants were correlated with the activity coefficients of products. Based on experimental results and calculated thermodynamic activities, the effect of different binary mixtures of solvents on the selective production of xylitol esters is reported. From this analysis, it is concluded that in the more polar conditions (100% dimethylsulfoxide (DMSO)), the synthesis of xylitol monoesters is favored. However, these conditions are unfavorable in terms of enzyme stability. As an alternative, binary mixtures of solvents were proposed. Each mixture of solvents was characterized in terms of the quantitative polarity parameter E(T)(30) and related with the activity coefficients of xylitol esters. To our knowledge, the characterization of solvent mixtures in terms of this polarity parameter and its relationship with the selectivity of the process has not been previously reported.
一种溶剂工程策略被应用于脂肪酶催化合成木糖醇油酸单酯。在不同的有机溶剂混合物中考察了这种多羟基分子的不同酯化程度。在此背景下,合成单油酰木糖醇的高选择性条件从纯正己烷中的6 mol%提高到2-甲基-2-丙醇/二甲基亚砜(DMSO)80:20(v/v)中的73 mol%。相反,在正己烷中实现了二油酰木糖醇和三油酰木糖醇的最高产量,达到94 mol%。反应介质极性的变化以及溶剂与反应物之间分子相互作用的变化与产物的活度系数相关。基于实验结果和计算得到的热力学活度,报道了不同二元溶剂混合物对木糖醇酯选择性生产的影响。通过该分析得出结论,在极性更强的条件(100%二甲基亚砜(DMSO))下,木糖醇单酯的合成更有利。然而,这些条件在酶稳定性方面不利。作为一种替代方案,提出了溶剂二元混合物。每种溶剂混合物根据定量极性参数E(T)(30)进行表征,并与木糖醇酯的活度系数相关。据我们所知,此前尚未报道过根据该极性参数对溶剂混合物进行表征及其与该过程选择性之间的关系。