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超声波辅助衍生化杯 Horn 升压装置中的雌激素类化合物并通过 GC-MS 测定。

Ultrasonic-assisted derivatization of estrogenic compounds in a cup horn booster and determination by GC-MS.

机构信息

Department of Analytical Chemistry, University of Basque Country, Bilbao, Spain.

出版信息

J Sep Sci. 2010 Jan;33(1):104-11. doi: 10.1002/jssc.200900449.

Abstract

Cup horn boosters are miniaturized ultrasound baths that maximize efficiency and precision. The optimization of an ultrasonic-assisted derivatization step by means of a cup horn booster and the determination of estrone, 17beta-estradiol, estriol, 17alpha-ethynyl estradiol and mestranol was developed by GC-MS. Different derivatization reagents and solvents were studied for maximizing the di-derivatization of 17alpha-ethynyl estradiol under ultrasound energy. Only N,O-bis(trimethylsilyl)trifluoroacetamide with 1% of trimethylchlorosilane in pyridine gave satisfactory results and this mixture was further used in the optimization of the ultrasound assisted derivatization. The experiment designs included sonication time (1-10 min), sonication power (20-80%), sonication cycles (1-9), derivatization reagent volume (25-125 microL) and solvent volume (25-125 microL). Once the optimum conditions were fixed, the effect of organic matter and the frequency of the water bath change were studied. Finally, the validation of the analytical method was carried out using spiked natural and synthetic waters. Recoveries (natural (138-70%) and synthetic (112-89%)), the LODs (0.35-1.66 ng/L), and LOQs (1.16-5.52 ng/L) and the precision (0.2-5.3%) of the method were studied. This is the first work in the literature where a cup horn booster is used with the aim of minimizing derivatization time during the determination of estrogenic compounds.

摘要

杯型超声增效器是一种微型化的超声波浴槽,可最大限度地提高效率和精度。通过杯型超声增效器优化超声辅助衍生化步骤,并结合 GC-MS 测定雌酮、17β-雌二醇、雌三醇、17α-乙炔基雌二醇和炔雌醇。研究了不同的衍生化试剂和溶剂,以最大限度地提高在超声能量下 17α-乙炔基雌二醇的双衍生化。只有在吡啶中加入 1%三甲基氯硅烷的 N,O-双(三甲基硅基)三氟乙酰胺才能得到满意的结果,并且该混合物进一步用于超声辅助衍生化的优化。实验设计包括超声时间(1-10 分钟)、超声功率(20-80%)、超声循环(1-9 次)、衍生化试剂体积(25-125 μL)和溶剂体积(25-125 μL)。一旦确定了最佳条件,就研究了有机物和水浴频率的变化的影响。最后,使用加标天然水和合成水对分析方法进行了验证。该方法的回收率(天然水(138-70%)和合成水(112-89%))、LOD(0.35-1.66ng/L)和 LOQ(1.16-5.52ng/L)以及精密度(0.2-5.3%)均进行了研究。这是文献中首次使用杯型超声增效器,旨在最小化测定雌激素化合物时的衍生化时间。

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