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用于在线吸附萃取和直接分析尿液中萘普生及其代谢物的水稳定金属有机骨架填充微柱。

Water stable metal-organic framework packed microcolumn for online sorptive extraction and direct analysis of naproxen and its metabolite from urine sample.

机构信息

School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

J Chromatogr A. 2013 Jun 14;1294:17-24. doi: 10.1016/j.chroma.2013.04.034. Epub 2013 Apr 18.

Abstract

The metal-organic framework MIL-101 was fabricated in a polyetheretherketone (PEEK) tube as micro-trapping device, and applied to sorptive extraction of naproxen and its metabolite in urine samples. The remarkable water stability of the MIL-101 characterizes the material as being different from other moisture sensitive metal-organic framework. It is therefore suitable for extraction of pharmaceuticals from biological fluids. The adsorption isotherms in aqueous solution showed that the adsorption of naproxen on MIL-101 is endothermic. Additionally, MIL-101 exhibited higher extraction capacity to naproxen than that of C18-bonded silica and multi-walled nanotube. A specially designed in-tube sorptive extraction (ITSE) device endows the extraction process with the characteristic of rapidness, convenience, and easy of conjunction with high performance liquid chromatography (HPLC). Finally the MIL-101 based ITSE method coupled with HPLC and fluorescence detection was applied to analysis of naproxen and 6-O-desmethylnaproxen in urine samples. Parameters that influence the online extraction procedure, including pH of the sample solution, flow rate of extraction, sample volume, desorption solvents and time were investigated. The method is proved to be highly sensitive with the linear range of 0.05-6.0μgL(-1) and the limits of detection of 0.034 and 0.011μgL(-1) for naproxen and 6-O-desmethylnaproxen, respectively. The recoveries in urine samples were 85.3-98.3% for naproxen and 94.0-97.3% for 6-O-desmethylnaproxen with intra- and inter-day RSDs of 2.7-5.2% and 7.1-8.1%, respectively. Urine samples could be directly subjected to analysis without any additional sample pretreatment. The proposed method was demonstrated an efficient, flexible and versatile extraction tool which is ideally suitable for online conjunction with chromatographic methods.

摘要

介孔材料 MIL-101 被制备在聚醚醚酮(PEEK)管中作为微捕集装置,并应用于尿液样品中萘普生及其代谢物的吸附萃取。MIL-101 具有显著的水稳定性,这使该材料有别于其他对湿度敏感的金属有机骨架。因此,它适合从生物流体中提取药物。水溶液中的吸附等温线表明,萘普生在 MIL-101 上的吸附是吸热的。此外,MIL-101 对萘普生的萃取容量高于 C18 键合硅胶和多壁纳米管。专门设计的管内吸附萃取(ITSE)装置使萃取过程具有快速、方便和易于与高效液相色谱(HPLC)结合的特点。最后,基于 MIL-101 的 ITSE 方法与 HPLC 和荧光检测相结合,用于尿液样品中萘普生和 6-O-去甲萘普生的分析。研究了影响在线萃取过程的参数,包括样品溶液的 pH 值、萃取流速、样品体积、洗脱溶剂和时间。该方法具有较高的灵敏度,萘普生和 6-O-去甲萘普生的线性范围分别为 0.05-6.0μg·L(-1),检出限分别为 0.034 和 0.011μg·L(-1)。萘普生和 6-O-去甲萘普生在尿液样品中的回收率分别为 85.3%-98.3%和 94.0%-97.3%,日内和日间 RSD 分别为 2.7%-5.2%和 7.1%-8.1%。尿液样品无需任何额外的样品预处理即可直接进行分析。该方法是一种高效、灵活和通用的萃取工具,非常适合与色谱方法在线结合。

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