Wang Shanshan, Qin Zongkui, Wang Yicong, Liu Leilei, Tan Zhijian
Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, College of Chemistry and Chemical Engineering, Jishou University, Zhangjiajie 427000, China.
Institute of Bast Fiber Crops and Center of Southern Economic Crops, Chinese Academy of Agricultural Sciences, Changsha 410205, China.
Foods. 2022 Aug 26;11(17):2590. doi: 10.3390/foods11172590.
A novel ethanolic two-phase system (ETPS) composed of PluronicL-64 (PL 64) and deep eutectic solvents (DESs) was constructed for the separation of two similar flavonoids of naringin (Nar) and neohesperidin (Neo) from the pomelo peel. The selectivity () data showed that DES prepared from tetrabutylammonium bromide (NBr) and glycerol (Gly) had the optimal distribution efficiency for Nar and Neo standards. A binodal curve of NBr-Gly/PL 64/ethanol system fitted to the nonlinear Merchuk relationship showed that the biphasic region was narrow for ETPS. The influences of the mass ratio of DESs and PL 64, DES concentration, PL 64 concentration, molar ratio of DESs, temperature, phosphate buffer solution, and ethanolic pH were studied in single-factor experiments. Under the optimal conditions, the maximum extraction efficiency ( = 68.32%, = 86.09%), partition coefficient ( = 6.66, = 19.13), and (2.88) were obtained in the DESs-rich (bottom) phase. NBr-Gly, Nar, and Neo with recovery yields of 78.12%, 66.61%, and 68.03%, respectively, had been recovered using D101 macroporous resin. This proposed ETPS is efficient and environmentally friendly and is expected to avail meaningful references for the separation of natural products with similar structures.
构建了一种由普朗尼克L-64(PL 64)和低共熔溶剂(DESs)组成的新型乙醇双相体系(ETPS),用于从柚皮中分离柚皮苷(Nar)和新橙皮苷(Neo)这两种相似的黄酮类化合物。选择性()数据表明,由四丁基溴化铵(NBr)和甘油(Gly)制备的DES对Nar和Neo标准品具有最佳的分配效率。拟合非线性Merchuk关系的NBr-Gly/PL 64/乙醇体系的双节线曲线表明,ETPS的双相区域较窄。在单因素实验中研究了DESs与PL 64的质量比、DES浓度、PL 64浓度、DESs的摩尔比、温度、磷酸盐缓冲溶液和乙醇pH值的影响。在最佳条件下,在富含DESs的(底部)相中获得了最大提取效率( = 68.32%, = 86.09%)、分配系数( = 6.66, = 19.13)和(2.88)。使用D101大孔树脂回收了NBr-Gly、Nar和Neo,回收率分别为78.12%、66.61%和68.03%。所提出的ETPS高效且环保,有望为分离具有相似结构的天然产物提供有意义的参考。