Department of Bioprocess Technology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Bioprocessing and Biomanufacturing Research Centre, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Molecules. 2018 Feb 24;23(2):501. doi: 10.3390/molecules23020501.
The synthesis of kojic acid derivative (KAD) from kojic and palmitic acid (C16:0) in the presence of immobilized lipase from (commercially known as Lipozyme RMIM), was studied using a shake flask system. Kojic acid is a polyfunctional heterocycles that acts as a source of nucleophile in this reaction allowing the formation of a lipophilic KAD. In this study, the source of biocatalyst, Lipozyme RMIM, was derived from the lipase of immobilized on weak anion exchange macro-porous Duolite ES 562 by the adsorption technique. The effects of solvents, enzyme loading, reaction temperature, and substrate molar ratio on the reaction rate were investigated. In one-factor-at-a-time (OFAT) experiments, a high reaction rate (30.6 × 10 M·min) of KAD synthesis was recorded using acetone, enzyme loading of 1.25% (/), reaction time of 12 h, temperature of 50 °C and substrate molar ratio of 5:1. Thereafter, a yield of KAD synthesis was optimized via the response surface methodology (RSM) whereby the optimized molar ratio (fatty acid: kojic acid), enzyme loading, reaction temperature and reaction time were 6.74, 1.97% (/), 45.9 °C, and 20 h respectively, giving a high yield of KAD (64.47%). This condition was reevaluated in a 0.5 L stirred tank reactor (STR) where the agitation effects of two impellers; Rushton turbine (RT) and pitch-blade turbine (PBT), were investigated. In the STR, a very high yield of KAD synthesis (84.12%) was achieved using RT at 250 rpm, which was higher than the shake flask, thus indicating better mixing quality in STR. In a rheological study, a pseudoplastic behavior of KAD mixture was proposed for potential application in lotion formulation.
在固定化脂肪酶 Lipozym RMIM(商业上称为 Lipozyme RMIM)存在下,从曲酸和棕榈酸(C16:0)合成曲酸衍生物(KAD),在摇瓶系统中进行了研究。曲酸是一种多功能杂环化合物,在该反应中充当亲核试剂的来源,允许形成亲脂性的 KAD。在这项研究中,生物催化剂的来源,Lipozyme RMIM,是通过吸附技术从固定在弱阴离子交换大孔 Duolite ES 562 上的脂肪酶衍生而来的。考察了溶剂、酶用量、反应温度和底物摩尔比对反应速率的影响。在单因素实验(OFAT)实验中,使用丙酮、酶用量 1.25%(/)、反应时间 12 h、温度 50°C 和底物摩尔比 5:1,记录到高 KAD 合成反应速率(30.6×10 M·min)。此后,通过响应面法(RSM)优化了 KAD 合成的产率,其中优化的摩尔比(脂肪酸:曲酸)、酶用量、反应温度和反应时间分别为 6.74、1.97%(/)、45.9°C 和 20 h,得到高 KAD(64.47%)产率。在 0.5 L 搅拌釜式反应器(STR)中重新评估了该条件,研究了两种叶轮(Rushton 涡轮(RT)和桨叶涡轮(PBT))的搅拌效果。在 STR 中,在 250 rpm 下使用 RT 可实现非常高的 KAD 合成产率(84.12%),高于摇瓶,这表明 STR 中的混合质量更好。在流变学研究中,提出了 KAD 混合物的假塑性行为,用于潜在的乳液制剂应用。