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用于固相萃取的聚合物离子液体修饰氧化石墨烯接枝二氧化硅,通过Box-Behnken统计设计分析尿液中黄酮类化合物的排泄动力学。

Polymeric ionic liquid modified graphene oxide-grafted silica for solid-phase extraction to analyze the excretion-dynamics of flavonoids in urine by Box-Behnken statistical design.

作者信息

Hou Xiudan, Liu Shujuan, Zhou Panpan, Li Jin, Liu Xia, Wang Licheng, Guo Yong

机构信息

Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China; University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

J Chromatogr A. 2016 Jul 22;1456:10-8. doi: 10.1016/j.chroma.2016.05.096. Epub 2016 May 27.

Abstract

A solid-phase extraction method for the efficient analysis of the excretion-dynamics of flavonoids in urine was established and described. In this work, in situ surface radical chain-transfer polymerization and in situ anion exchange were utilized to tune the extraction performance of poly(1-vinyl-3-hexylimidazolium bromide)-graphene oxide-grafted silica (poly(VHIm(+)Br(-))@GO@Sil). Graphene oxide (GO) was first coated onto the silica using a layer-by-layer fabrication method, and then the anion of poly(VHIm(+)Br(-))@GO@Sil was changed into hexafluorophosphate (PF6(-)) by in situ anion exchange. The interaction energies between two PILs and four flavonoids were calculated with the Gaussian09 suite of programs. A Box-Behnken design was used for the optimization of four greatly influential parameters after single-factor experiments to obtain more accurate and precise results. Coupled to high performance liquid chromatography, the poly(VHIm(+)PF6(-))@GO@Sil method showed acceptable extraction recoveries for the four flavonoids, with limits of detection in the range of 0.1-0.5μgL(-1), and wide linear ranges with correlation coefficients (R) ranging from 0.9935 to 0.9987. Under the optimum conditions, the proposed method was applied to analyze the urines collected from a healthy volunteer. The excretion amount-time profiles revealed that 4-15h was the main excretion time for the detected flavonoids. The results indicated that the newly developed method offered the advantages of being feasible, green and cost-effective, and could be successfully applied to the extraction and enrichment of flavonoids in human body systems allowing the study of the metabolic kinetics.

摘要

建立并描述了一种用于高效分析尿液中黄酮类化合物排泄动力学的固相萃取方法。在本研究中,利用原位表面自由基链转移聚合和原位阴离子交换来调节聚(1-乙烯基-3-己基咪唑溴化物)-氧化石墨烯-接枝二氧化硅(聚(VHIm(+)Br(-))@GO@Sil)的萃取性能。首先采用层层组装法将氧化石墨烯(GO)包覆在二氧化硅上,然后通过原位阴离子交换将聚(VHIm(+)Br(-))@GO@Sil的阴离子转变为六氟磷酸盐(PF6(-))。使用Gaussian09程序包计算了两种离子液体与四种黄酮类化合物之间的相互作用能。在单因素实验后,采用Box-Behnken设计对四个影响较大的参数进行优化,以获得更准确和精确的结果。与高效液相色谱联用,聚(VHIm(+)PF6(-))@GO@Sil方法对四种黄酮类化合物显示出可接受的萃取回收率,检测限在0.1 - 0.5μg L(-1)范围内,线性范围宽,相关系数(R)在0.9935至0.9987之间。在最佳条件下,将该方法应用于分析一名健康志愿者收集的尿液。排泄量-时间曲线表明,4 - 15小时是所检测黄酮类化合物的主要排泄时间。结果表明,新开发的方法具有可行、绿色且经济高效的优点,可成功应用于人体系统中黄酮类化合物的萃取和富集,从而用于研究代谢动力学。

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