Institute of Chemistry, Federal University of Alfenas, Alfenas, Minas Gerais, Brazil.
Biotechnol Appl Biochem. 2023 Jun;70(3):1291-1301. doi: 10.1002/bab.2439. Epub 2023 Jan 5.
The present study consists of developing an enzymatic process for the production of wax esters (lauryl stearate and cetyl stearate) by esterification in a heptane medium. Lipase from Thermomyces lanuginosus (TLL) immobilized via interfacial activation on silica particles from rice husks functionalized with triethoxy(octyl)silane (TLL-Octyl-SiO ) was used as biocatalyst. Maximum immobilized protein loading of around 22 mg g (that corresponds to an immobilization yield of ≈55%) of support was observed using an initial protein loading of 40 mg g of Octyl-SiO . Its hydrolytic activity (olive oil emulsion hydrolysis) was of 620 U g of biocatalyst. The effect of certain factors on the cetyl estearate production was evaluated using a central composite rotatable design (CCDR). Under optimal conditions (64°C, 21% of mass of biocatalyst per volume of reaction mixture, 170 rpm, and stoichiometric acid:alcohol molar ratio 1 mol L of each reactant), maximum acid conversion percentage of 91% was observed after 60 min of reaction. Lauryl stearate was also produced under such conditions, and an acid conversion of 93% after 60 min of reaction was also achieved. Free lipase exhibited acid conversion of only 15%-20% for both reaction mixtures. After nine successive esterification batches, TLL-Octyl-SiO retained 85%-90% of its original activity. These results show the promising use of the prepared biocatalyst in wax esters production due to its high catalytic activity and reusability.
本研究旨在开发一种在庚烷介质中通过酯化作用生产蜡酯(月桂酸硬脂酸酯和十六酸鲸蜡酯)的酶法工艺。使用通过界面活化固定在经过三乙氧基(辛基)硅烷官能化的稻壳二氧化硅颗粒上的Thermomyces lanuginosus 脂肪酶(TLL)作为生物催化剂。使用初始的 Octyl-SiO 负载量为 40mg g 的情况下,观察到最大固定化蛋白负载量约为 22mg g(对应于约 55%的固定化产率)。其水解活性(橄榄油乳液水解)为 620U g 的生物催化剂。使用中心组合旋转设计(CCDR)评估了某些因素对十六酸鲸蜡酯生产的影响。在最佳条件下(64°C,反应混合物每体积的生物催化剂质量为 21%,170rpm,反应物的化学计量酸:醇摩尔比为 1mol L),反应 60 分钟后观察到最大酸转化率为 91%。在这种条件下也生产了月桂酸硬脂酸酯,反应 60 分钟后酸转化率也达到了 93%。游离脂肪酶对两种反应混合物的酸转化率仅为 15%-20%。在九个连续的酯化批次后,TLL-Octyl-SiO 保留了其原始活性的 85%-90%。这些结果表明,由于其高催化活性和可重复使用性,制备的生物催化剂在蜡酯生产中具有广阔的应用前景。