Li Guizhen, Wang Xiaoqin, Row Kyung Ho
Department of Chemistry and Chemical Engineering, Inha University, Incheon 402751, Korea.
Molecules. 2017 Jun 25;22(7):1061. doi: 10.3390/molecules22071061.
Different kinds of deep eutectic solvents (DES) based on choline chloride (ChCl) and ionic liquids (ILs) based on 1-methylimidazole were used to modify Fe3O4/molecularly imprinted polymers (Fe3O4/MIPs), and the resulting materials were applied for the rapid purification of alkaloid isomers (theobromine and theophylline) from green tea with magnetic solid-phase extraction (M-SPE). The M-SPE procedure was optimized using the response surface methodology (RSM) to analyze the maximum conditions. The materials were characterized by Fourier transform infrared spectroscopy (FI-IR) and field emission scanning electron microscopy (FE-SEM). Compared to the ILs-Fe3O4/MIPs, the DESs-Fe3O4/MIPs were developed for the stronger recognition and higher recoveries of the isomers (theophylline and theobromine) from green tea, particularly DES-7-Fe3O4/MIPs. With RSM, the optimal recovery condition for theobromine and theophylline in the M-SPE were observed with ratio of methanol (80%) as the washing solution, methanol/acetic acid (HAc) (8:2) as the eluent at pH 3, and an eluent volume of 4 mL. The practical recoveries of theobromine and theophylline in green tea were 92.27% and 87.51%, respectively, with a corresponding actual extraction amount of 4.87 mg•g-1 and 5.07 mg•g-1. Overall, the proposed approach with the high affinity of Fe3O4/MIPs might offer a novel method for the purification of complex isomer samples.
基于氯化胆碱(ChCl)的不同种类的低共熔溶剂(DES)和基于1-甲基咪唑的离子液体(ILs)被用于改性四氧化三铁/分子印迹聚合物(Fe3O4/MIPs),所得材料应用于通过磁性固相萃取(M-SPE)从绿茶中快速纯化生物碱异构体(可可碱和茶碱)。使用响应面法(RSM)对M-SPE程序进行优化以分析最佳条件。通过傅里叶变换红外光谱(FI-IR)和场发射扫描电子显微镜(FE-SEM)对材料进行表征。与ILs-Fe3O4/MIPs相比,开发的DESs-Fe3O4/MIPs对绿茶中异构体(茶碱和可可碱)具有更强的识别能力和更高的回收率,特别是DES-7-Fe3O4/MIPs。利用RSM,在M-SPE中观察到可可碱和茶碱的最佳回收条件为:以甲醇(80%)为洗涤液,甲醇/乙酸(HAc)(8:2)为pH 3的洗脱液,洗脱液体积为4 mL。绿茶中可可碱和茶碱的实际回收率分别为92.27%和87.51%,相应的实际提取量分别为4.87 mg•g-¹和5.07 mg•g-¹。总体而言,所提出的具有Fe3O4/MIPs高亲和力的方法可能为复杂异构体样品的纯化提供一种新方法。