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Profiling of amine metabolites in human biofluids by micellar electrokinetic chromatography with laser-induced fluorescence detection

机译:胶束电动色谱与激光诱导荧光检测对人生物流体中胺代谢物的分析

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A rapid and sensitive capillary electrophoresis (CE) method has been developed for profiling organic metabolites containing amine functional groups in mammalian biofluids. Metabolites containing an amine group were derivatized with 4-fluoro-7-nitrobenzo-2,1,3-oxadiazol (NBD-F), separated by micellar electrokinetic chromatography (MEKC), and detected by argon-ion (488 nm) laser-induced fluorescence detection. The optimized MEKC background electrolyte conditions were: 50 mmol L?1 sodium cholate, 5 mmol L?1 β-cyclodextrin, and 20 mmol L?1 Brij 35 in 20 mmol L?1 aqueous borate buffer, pH 9.3, containing 7% methanol. Under these conditions all the amine compounds in mammalian biofluids, for example plasma, saliva, and urine, were derivatized directly, without extraction, in a minimum volume of 100 nL and the derivatives could be separated within 16 min. Up to 90% of the amine-containing metabolites in plasma and saliva could be identified by reference to standard compounds. For twenty amine standards linearity of calibration was better than R 2 = 0.99. Migration-time and peak-area reproducibility were better than RSD 1.5% and 15% respectively. In replicate analysis of human plasma bioanalytical precision ranged between 0.7 and 3.8 RSD% for a 5.0-μL volume and between 1.7 and 5.5 RSD% for 100-nL volume. The concentrations measured were found to be in agreement with literature values.
机译:已经开发出一种快速灵敏的毛细管电泳(CE)方法,用于分析哺乳动物生物流体中含有胺官能团的有机代谢产物。含有胺基的代谢物用4-氟-7-硝基苯并-2,1,3-恶二唑(NBD-F)衍生化,通过胶束电动色谱(MEKC)分离,并通过氩离子(488 nm)激光检测-诱导荧光检测。 MEKC的最佳背景电解质条件为:在20 mmol L?中的50 mmol L?1 胆酸钠,5 mmol L?1 β-环糊精和20 mmol L?1 Brij 35。 1 硼酸水溶液,pH 9.3,含有7%的甲醇。在这些条件下,哺乳动物生物流体中的所有胺化合物(例如血浆,唾液和尿液)都可以直接衍生而无需提取,最小体积为100 nL,并且可以在16分钟内分离出衍生物。血浆和唾液中多达90%的含胺代谢物可通过参考标准化合物进行鉴定。对于二十种胺标准品,校准线性度优于R 2 = 0.99。迁移时间和峰面积重现性分别优于RSD 1.5%和15%。在人体血浆的重复分析中,对于5.0μL体积,生物分析精度介于0.7和3.8 RSD%之间;对于100nL体积,生物分析精度介于1.7和5.5 RSD%之间。发现测得的浓度与文献值一致。

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