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首页> 外文期刊>Analytical chemistry >Perfluorosulfonated Ionomer-Modified Polyethylene. A Material for Simultaneous Solid-Phase Enrichment and Enhanced Precolumn Dansylation of C-21 Ketosteroids in Human Serum
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Perfluorosulfonated Ionomer-Modified Polyethylene. A Material for Simultaneous Solid-Phase Enrichment and Enhanced Precolumn Dansylation of C-21 Ketosteroids in Human Serum

机译:全氟磺化离聚物改性的聚乙烯。一种同时固相富集和增强人血清中C-21酮类固醇的柱前丹磺酰化的材料

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A new derivatization procedure has been developed where solid-phase catalysis is utilized to facilitate the formation of hydrazones in precolumn labeling of keto-containing compounds. This procedure has been implemented on a solid-phase enrichment and enhanced derivatization (SPEED) device, prepared from porous polyethylene that has been coated with Nafion and dansylhydrazine. The SPEED devices have been optimized using experimental design and characterized for dansylation of C-21 ketosteroids by multivariate data analysis, using progesterone as the model compound. The reaction temperature and the molar ratio between the steroid and the derivatization reagent were found to be the factors most strongly affecting the reaction. Faster reaction kinetics were achieved when the molar ratio between dansylhydrazine and the steroid was increased. Mass spectroscopic analysis showed that the four derivative peaks eluting when derivatized progesterone was separated on an octadecyl silica stationary phase were due to the syn and anti mono- and bis-(hydrazones) formed in the reaction. Using optimal reaction conditions, the derivatives mainly constitute the syn and anti conformers of bis-derivatives. In contrast to solution-based acid catalysis, the SPEED device was remarkably insensitive to water in the reaction mixture. A sample volume of 400 μL was found to be the maximum, enabling sample enrichment prior derivatization. Using optimal experimental conditions, picomole amounts of ketosteroids could be derivatized in 10 min at room temperature. Analysis of spiked serum samples containing 0.4-2.0 nmol of progesterone showed overall recoveries of 52-63%. The corresponding 3σ detection limit was 1.3 pmol (n=4, 100 μL injected), as estimated from calibration curve data.
机译:已经开发了一种新的衍生化方法,其中利用固相催化来促进含酮化合物的预柱标记中in的形成。该程序已在固相富集和增强衍生化(SPEED)装置上实施,该装置由已涂有Nafion和丹磺酰肼的多孔聚乙烯制成。 SPEED设备已通过实验设计进行了优化,并通过使用孕酮作为模型化合物的多变量数据分析对C-21酮类固醇进行丹磺酰化进行了表征。发现反应温度和类固醇与衍生化试剂之间的摩尔比是最强烈影响反应的因素。当丹酰肼与类固醇的摩尔比增加时,反应动力学更快。质谱分析表明,当在十八烷基二氧化硅固定相上分离衍生的孕酮时洗脱出的四个衍生峰是由于反应中形成的顺式和反式单hydr和双(。使用最佳反应条件,衍生物主要构成双衍生物的顺式和反式构象体。与基于溶液的酸催化相反,SPEED装置对反应混合物中的水非常不敏感。发现最大体积为400μL的样品,可以在衍生化之前进行样品富集。使用最佳实验条件,可以在室温下10分钟内衍生出picomole量的酮类固醇。含有0.4-2.0 nmol孕酮的加标血清样品的分析显示总回收率为52-63%。根据校准曲线数据估算,相应的3σ检测限为1.3 pmol(n = 4,已注入100μL)。

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