Sun Shangde, Liu Jinming, Li Xulei
Lipid Technology and Engineering, School of Food Science and Engineering, Henan University of Technology, Lianhua Road 100, Zhengzhou, 450001 Henan People's Republic of China.
3 Biotech. 2018 Sep;8(9):403. doi: 10.1007/s13205-018-1426-5. Epub 2018 Sep 8.
Fatty acids are the precursors for the production of fuels, oleochemicals and special health care products. In this study, a novel rapid method for fatty acid (FA) preparation by the enzymatic hydrolysis of Phoenix tree seed, an undeveloped woody oil seed, was developed. High-temperature GC with flame ionization detector (FID) and the hydrolysis ratio were used to monitor reaction progress. Enzyme screening and the effect of reaction variables on the hydrolysis of seeds were evaluated and optimized by response surface methodology. The results showed that among the tested enzymes, Lipozyme TLIM showed the greatest amount of hydrolysis of Phoenix tree seed. FAs can be rapidly prepared by one-step hydrolysis of Phoenix tree seeds using Lipozyme TLIM as the biocatalyst. Under the optimized conditions (6% enzyme load, 1:8 mass ratio of seed to water, 47.7 °C and 16 min), the maximum hydrolysis ratio (96.4 ± 1.1%) can be achieved. The effect of reaction variables on the hydrolysis decreased in the following order: reaction time > enzyme load > substrate ratio of seed to water > reaction temperature. This work provides a novel and rapid method for FA preparation from oil seeds.
脂肪酸是生产燃料、油脂化学品和特殊保健品的前体物质。在本研究中,开发了一种通过对桐树籽(一种未开发的木本油料种子)进行酶解来制备脂肪酸(FA)的新型快速方法。采用配有火焰离子化检测器(FID)的高温气相色谱法和水解率来监测反应进程。通过响应面法评估并优化了酶的筛选以及反应变量对种子水解的影响。结果表明,在所测试的酶中,Lipozyme TLIM对桐树籽的水解量最大。以Lipozyme TLIM作为生物催化剂,通过一步水解桐树籽可快速制备脂肪酸。在优化条件(酶负载量6%、种子与水的质量比1:8、47.7℃和16分钟)下,可实现最大水解率(96.4±1.1%)。反应变量对水解的影响按以下顺序递减:反应时间>酶负载量>种子与水的底物比>反应温度。本研究为从油料种子制备脂肪酸提供了一种新型快速方法。