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首页> 外文期刊>Journal of mass spectrometry: JMS >Screening for pharmaco-toxicologically relevant compounds in biosamples using high-resolutionmass spectrometry: a ‘metabolomic’ approach to the discrimination between isomers
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Screening for pharmaco-toxicologically relevant compounds in biosamples using high-resolutionmass spectrometry: a ‘metabolomic’ approach to the discrimination between isomers

机译:使用高分辨率质谱法在生物样品中筛选与药物毒理学相关的化合物:区分异构体的“代谢”方法

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High-resolution mass spectrometry (HRMS) enables the identification of a chemical formula of small molecules through the accurate measurement of mass and isotopic pattern. However, the identification of an unknown compound starting from the chemical formula requires additional tools: (1) a database associating chemical formulas to compound names and (2) a way to discriminate between isomers. The aim of this present study is to evaluate the ability of a novel ‘metabolomic’ approach to reduce the list of candidates with identical chemical formula. Urine/blood/hair samples collected from real positive cases were submitted to a screening procedure using ESI-MS-TOF (positive-ion mode) combined with either capillary electrophoresis or reversed phase liquid chromatography (LC). Detected peaks were searched against a Pharmaco/Toxicologically Relevant Compoundsdatabase(ca50 500compoundsandphaseIandphaseII metabolites) consistingofasubsetofPubChemcompounds and a list of candidates was retrieved. Then, starting from the mass of unknown, mass shifts corresponding to pre-defined biotransformations (e.g. demethylation, glucuronidation, etc.) were calculated and corresponding mass chromatograms were extracted from the total ion current (TIC) in order to search for metabolite peaks. For each candidate, the number of different functional groups in the molecule was automatically calculated using E-Dragon software (Talete srl, Milan, Italy). Then, the presence of metabolites in the TIC was matched with functional groups data in order to exclude candidates with structures not compatible with observed biotransformations (e.g. loss of methyl from a structure not bearing methyls). The procedure was tested on 108 pharmaco-toxicologically relevant compounds (PTRC) and their phase I metabolites were detected in real positive samples. The mean list length (MLL) of candidates retrieved from the database was 7.01 ± 4.77 (median, 7; range, 1–28) before the application of the ‘metabolomic’ approach, and after the application it was reduced to 4.08 ± 3.11 (median 3, range 1–17). HRMS allows a much broader screening for PTRC than other screening approaches (e.g. library search on mass spectra databases). The ‘metabolomic’ approach enables the reduction of the list of candidate isomers.
机译:高分辨率质谱(HRMS)可通过精确测量质量和同位素模式来鉴定小分子的化学式。但是,从化学式开始识别未知化合物需要其他工具:(1)将化学式与化合物名称相关联的数据库,以及(2)区分异构体的方法。本研究的目的是评估一种新颖的“代谢”方法减少具有相同化学式的候选者列表的能力。使用ESI-MS-TOF(正离子模式)结合毛细管电泳或反相液相色谱法(LC),将从真实阳性病例中收集的尿液/血液/头发样品进行筛查。将检测到的峰与药理学/毒理学上相关的化合物数据库(ca50 500化合物和相I和相II代谢物)进行检索,并检索一组候选化学化合物。然后,从未知物质的质量开始,计算与预定义的生物转化(例如,去甲基化,葡糖醛酸化等)相对应的质量变化,并从总离子流(TIC)中提取相应的质谱图,以搜索代谢物峰。对于每个候选人,使用E-Dragon软件(意大利米兰的Talete srl)自动计算分子中不同官能团的数量。然后,将TIC中代谢物的存在与官能团数据进行匹配,以排除结构与观察到的生物转化不兼容的候选物(例如,甲基从不带有甲基的结构中丢失)。该程序在108种药理毒理学相关化合物(PTRC)上进行了测试,并且在真实阳性样品中检测到了它们的I相代谢产物。从数据库中检索出的候选者的平均列表长度(MLL)在应用“代谢组学”方法之前为7.01±4.77(中位数,7;范围,1-28),在应用后降低为4.08±3.11(中位数3,范围1-17)。与其他筛选方法(例如在质谱数据库上进行库检索)相比,HRMS可以对PTRC进行更广泛的筛选。 “代谢组学”方法可减少候选异构体的列表。

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