首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Biocatalytic enantiomeric resolution of L-menthol from an eight isomeric menthol mixture through transesterification
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Biocatalytic enantiomeric resolution of L-menthol from an eight isomeric menthol mixture through transesterification

机译:通过酯交换反应从八种异构薄荷醇混合物中生物催化拆分L-薄荷醇

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摘要

The four diastereomers of menthol and their enantiomers, namely DL-menthol, DL-neomenthol, DL-neoisomenthol and DL-isomenthol, were synthesised by the hydrogenation of thymol to yield an eight isomer liquid menthol. A suitably selective lipase was sought to preferentially esterify L-menthol in organic solvent, hence simplifying separation from the diasteromeric mix through distillation. From an initial screen a commercial Pseudomonas fluorescens lipase (Amano AK) was selected, and vinyl acetate was chosen as a suitable irreversible acyl donor for transesterification. The reaction reagent ratios were optimised, and an enantiomeric excess (ee) of L-menthol of greater than 95% was reproducibly achievable at a conversion of 30% DL-menthol (0.68 M) at ≤50 °C. On the basis of the composition of liquid menthol the reaction had a diastereomeric excess (de) of 82%. The enzyme was recycled 150 times in 5 ml batch reactions using liquid menthol and achieving an overall yield of 184.3 g DL-menthol/g commercial enzyme preparation. The by-product acetic acid, formed by hydrolysis of menthyl acetate, was found to cause a high degree of enzyme inactivation. The resolution reaction was scaled up 400 fold to 2 L and the enzyme recycled 38 times with an average conversion of the available L-menthol of 59% and a volumetric productivity of 1.2 g/L/h.
机译:通过麝香草酚的氢化反应合成了薄荷醇的四种非对映异构体及其对映异构体,即DL-薄荷醇,DL-新薄荷醇,DL-新异薄荷醇和DL-异薄荷醇,得到了八种异构体液体薄荷醇。寻求合适的选择性脂肪酶以优先在有机溶剂中酯化L-薄荷醇,从而简化了通过蒸馏从非对映异构体混合物中的分离。从最初的筛选中,选择了商品的荧光假单胞菌脂肪酶(Amano AK),并选择乙酸乙烯酯作为合适的不可逆的酰基供体,用于酯交换反应。优化了反应试剂的比例,在≤50°C的条件下,当30%的DL-薄荷醇(0.68 M)转化率时,可重现的L-薄荷醇对映体过量(ee)大于95%。基于液体薄荷醇的组成,反应的非对映异构体过量(de)为82%。在使用液体薄荷醇的5 ml分批反应中,该酶被回收150次,并获得184.3 g DL-薄荷醇/ g商业酶制剂的总产量。发现通过乙酸薄荷酯的水解形成的副产物乙酸引起高度的酶失活。拆分反应的规模扩大了400倍,达到2 L,酶循环了38次,可用L-薄荷醇的平均转化率为59%,体积生产率为1.2 g / L / h。

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