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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Development of a sensitive liquid chromatography method coupled with a tandem mass spectrometric detection for the clinical analysis of vinflunine and 4-O-deacetyl vinflunine in blood, urine and faeces
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Development of a sensitive liquid chromatography method coupled with a tandem mass spectrometric detection for the clinical analysis of vinflunine and 4-O-deacetyl vinflunine in blood, urine and faeces

机译:灵敏液相色谱方法与串联质谱检测相结合,用于血液,尿液和粪便中长春氟宁和4-O-去乙酰长春氟宁的临床分析

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摘要

A sensitive and specific liquid chromatographic method coupled with tandem mass spectrometric detection was set up and fully validated for the simultaneous quantification of vinflunine (VFL) and its pharmacologically active metabolite, 4-O-deacetyl vinflunine (DVFL). The two compounds, as well as vinblastine (used as internal standard), were deproteinised from blood and faeces, analysed on a cyano type column and detected on a Micromass Quattro II system in the positive ion mode after ionisation using an electrospray ion source. In blood, linearity was assessed up to 200 ng/ml for vinflunine and 100 ng/ml for 4-O-deacetyl vinflunine. The lower limit of quantification was validated at 250 pg/ml for both compounds. In other biological media, the linearity was assessed within the same range; the limit of quantification was adjusted according to the expected concentration levels of each compound. This method was first developed in order to identify the structures and to elucidate the metabolic pathway of vinflunine. Thanks to its high sensitivity and specificity, the method has enabled the quantification of vinflunine and 4-O-deacetyl vinflunine in blood at trace levels, and has contributed to the knowledge of vinflunine metabolism by monitoring up to 10 metabolites. (c) 2007 Elsevier B.V. All rights reserved.
机译:建立了灵敏且特定的液相色谱方法,并结合了串联质谱检测,并完全验证了对长春氟宁(VFL)及其药理活性代谢物4-O-脱乙酰长春氟宁(DVFL)的同时定量。两种化合物以及长春碱(用作内标)从血液和粪便中脱蛋白,在氰基型色谱柱上进行分析,并在电喷雾离子源电离后,在阳离子模式下在Micromass Quattro II系统上进行检测。在血液中,长春氟宁的线性度最高可达200​​ ng / ml,4-O-脱乙酰基长春氟宁的线性度最高可达100 ng / ml。两种化合物的定量下限均已验证为250 pg / ml。在其他生物介质中,线性度是在相同范围内评估的。根据每种化合物的预期浓度水平调整定量限。首先开发该方法是为了鉴定长春氟宁的结构并阐明长春氟宁的代谢途径。由于其高灵敏度和特异性,该方法能够定量测定血液中的长春氟宁碱和4-O-脱乙酰基长春氟宁,并通过监测多达10种代谢产物为长春氟宁新陈代谢的知识做出了贡献。 (c)2007 Elsevier B.V.保留所有权利。

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