School of Biotechnology & School of the Environment and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212018, PR China.
School of Biotechnology & School of the Environment and Chemical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212018, PR China; Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang 212018, PR China.
Bioresour Technol. 2015 Oct;193:498-506. doi: 10.1016/j.biortech.2015.06.143. Epub 2015 Jul 3.
A segmented flow containing a buffer-ionic liquid/solvent in a micro-channel reactor was applied to synthesize isoquercitrin by the hesperidinase-catalyzed selective hydrolysis of rutin, based on a novel system of reaction coupling with separation. Within the developed microchannel reactor with one T-shaped inlet and outlet, the maximum isoquercitrin yield (101.7 ± 2.6%) was achieved in 20 min at 30 °C and 4 μL/min. Compared with a continuous-flow reactor, reaction rate was increased 4-fold due to a glycine-sodium hydroxide:[Bmim][BF4]/glycerol triacetate (1:1, v/v) system that formed a slug flow in microchannel and significantly increased mass transfer rates. The mass transfer coefficient significantly increased and exhibited a linear relationship with the flow rate. Hesperidinase could be efficiently reused at least 5 times, without losing any activity. The bonding mechanism and secondary structure of hesperidinase indicated that hesperidinase had a greater affinity to rutin at a production rate of 4 μL/min in this segmented flow microreactor.
在基于反应耦合与分离的新型体系中,采用含有缓冲离子液体/溶剂的分段流在微通道反应器中合成异槲皮苷,利用橙皮苷酶选择性水解芦丁。在具有一个 T 型入口和出口的开发的微通道反应器中,在 30°C 和 4 μL/min 的条件下,20 min 内可获得最大的异槲皮苷产率(101.7±2.6%)。与连续流反应器相比,由于甘氨酸-氢氧化钠:[Bmim][BF4]/甘油三乙酸酯(1:1,v/v)体系在微通道中形成塞流,显著提高了传质速率,反应速率提高了 4 倍。传质系数显著增加,并与流速呈线性关系。橙皮苷酶至少可以重复使用 5 次,而不会失去任何活性。橙皮苷酶的结合机制和二级结构表明,在该分段流微反应器中,当生产速率为 4 μL/min 时,橙皮苷酶对芦丁具有更大的亲和力。