固相萃取-气相色谱-质谱联用法同时测定人尿中15种低剂量苯二氮卓类药物

D Borrey , E Meyer , W Lambert , C Van Peteghem , A.P De Leenheer
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引用次数: 58

摘要

建立了同时分析人体尿液中15种低剂量苯二氮卓类药物及其代谢产物的气相色谱-质谱联用方法。目标化合物为阿普唑仑、α-羟基阿普唑仑、4-羟基阿普唑仑、氟硝西泮、7-氨基氟硝西泮、去甲基氟硝西泮、氟西泮、羟乙基氟西泮、氮脱盐基氟西泮、酮唑仑、恶西泮、氯美西泮、劳拉西泮、三唑仑和α-羟基三唑仑。内标为氮甲基氯硝西泮。尿液样品的制备包括用Helix pomatia β-葡萄糖醛酸酶在56°C下酶解共轭代谢物1小时,然后在苯基型柱上固相萃取。提取的苯二氮卓类药物随后在聚二甲基硅氧烷柱上进行分析,柱上注射以提高灵敏度。除恶西泮、劳拉西泮和4-羟阿普唑仑的回收率约为60%外,其余化合物的提取率均在80%以上。扫描模式下的lod范围为13至30 ng/ml,选择离子监测(SIM)模式下的lod范围为1.0至1.7 ng/ml。在扫描模式下的浓度范围为50 ~ 1000 ng/ml,在SIM模式下的浓度范围为5 ~ 100 ng/ml,得到了线性校准曲线。三种不同浓度下的日内和日相对标准偏差均未超过15%。
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Simultaneous determination of fifteen low-dosed benzodiazepines in human urine by solid-phase extraction and gas chromatography–mass spectrometry

A gas chromatographic–mass spectrometric method was developed for the simultaneous analysis of 15 low-dosed benzodiazepines, both parent compounds and their corresponding metabolites, in human urine. The target compounds are alprazolam, α-hydroxyalprazolam, 4-hydroxyalprazolam, flunitrazepam, 7-aminoflunitrazepam, desmethylflunitrazepam, flurazepam, hydroxyethylflurazepam, nitrogen-desalkylflurazepam, ketazolam, oxazepam, lormetazepam, lorazepam, triazolam and α-hydroxytriazolam. Nitrogen-methylclonazepam is used as the internal standard. The urine sample preparation involves enzymatic hydrolysis of the conjugated metabolites with Helix pomatia β-glucuronidase for 1 h at 56°C followed by solid-phase extraction on a phenyl-type column. The extracted benzodiazepines are subsequently analyzed on a polydimethylsiloxane column using on-column injection to enhance sensitivity. The extraction efficiency exceeded 80% for all compounds except for oxazepam, lorazepam and 4-hydroxyalprazolam which had recoveries of about 60%. The LODs ranged from 13 to 30 ng/ml in the scan mode and from 1.0 to 1.7 ng/ml in the selected ion monitoring (SIM) mode. Linear calibration curves were obtained in the concentration ranges from 50 to 1000 ng/ml in the scan mode and from 5 to 100 ng/ml in the SIM mode. The within-day and day-to-day relative standard deviations at three different concentrations never exceeded 15%.

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