首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Preparation of restricted access molecularly imprinted polymers based fiber for selective solid-phase microextraction of hesperetin and its metabolites in vivo
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Preparation of restricted access molecularly imprinted polymers based fiber for selective solid-phase microextraction of hesperetin and its metabolites in vivo

机译:基于伯哌汀的选择性固相微萃取的限制性近期碱基纤维的制备及其在体内代谢物

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摘要

A novel restricted access molecularly imprinted polymers (RAMIPs) fiber was developed for solid-phase microextraction (SPME) of hesperetin and its metabolites in livers of live rats in vivo. Hesperetin as the template, N-isopropylacrylamide as the functional monomer, ethylene glycol dimethyl acrylate as the crosslinker, 2,2-azobisisobutyonnitrile as initiator and bovine serum albumin as the restricted access material were applied in the preparation process. Scanning electron microscopy and Fourier transform infrared spectroscopy were applied to characterize the polymers. The adsorption experiments indicated that RAMIPs-SPME fibers performed high selective recognition property to hesperetin. The selectivity experiment indicated that the adsorption capacity and selectivity of RAMIPs-SPME fibers to hesperetin was higher than that of quercetin, luteolin and baicalein. Macromolecules elimination test showed RAMIPs-SPME fibers could eliminate 94.80%-98.96% of macromolecules, which indicated that RAMIPs-SPME fibers can be used to extract analytes directly from complex biological samples. Furthermore, RAMIPs-SPME sampling combined to ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was applied to capture and identify hesperetin and its metabolites in rat livers in vivo. Finally, hesperetin-7-O-glucuronide, hesperetin-3'-O-glucuronide, eriodictyol and homoeriodictyol were identified as the metabolites of hesperetin. In comparison with the MIPs fibers, commercial PDMS and DVB fibers, RAMIPs-SPME fibers possessed better exclusion effect to macromolecules and higher selectivity to hesperetin and its metabolites. The results demonstrated that the prepared RAMIPs-SPME fiber were proven to be effective tool for the selective adsorption and enrichment of hesperetin and its metabolites from the complex biological fluids.
机译:一种新的限制性接入分子印迹聚合物(Ramips)纤维是为伊默特素的固相微萃取(SPME)和其在体内活大鼠肝脏中的代谢物。作为模板,作为功能性单体,丙烯酸乙二醇酯作为交联剂的乙二醇二甲酯,作为引发剂和牛血清白蛋白作为限制性接入材料的乙二醇酯作为引发剂和牛血清白蛋白的丙烯酸乙二醇酯。扫描电子显微镜和傅里叶变换红外光谱施用以表征聚合物。吸附实验表明Ramips-SPME纤维对橙皮素进行了高选择性识别性质。选择性实验表明Ramips-SPME纤维对橙皮素的吸附能力和选择性高于槲皮素,叶氏素和Baicalin。宏次消除试验显示Ramips-SPME纤维可以消除94.80%-98.96%的大分子,这表明Ramips-SPME纤维可用于直接从复杂的生物样品中提取分析物。此外,施加到超高性能液相色谱 - 串联质谱(UPLC-MS / MS)的RamiP-SPME取样被捕获和识别体内大鼠肝脏中的橙皮素及其代谢物。最后,Hesperetin-7-O-葡糖醛酸,Hesperetin-3'-O-葡糖醛酸,Eriodictyol和Homoheriodictyol被鉴定为伊伯特素的代谢物。与MIPS纤维,商业PDMS和DVB纤维相比,RAMIPS-SPME纤维对大分子和对橙皮素的选择性更好地具有更好的排斥效果及其代谢物。结果表明,制备的Ramips-SPME纤维被证明是有效的工具,用于选择性吸附和富集的伊伯特素及其从复杂的生物流体中的代谢物。

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