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A Computational Drug Metabolite Detection Using the Stable Isotopic Mass-Shift Filtering with High Resolution Mass Spectrometry in Pioglitazone and Flurbiprofen

机译:在吡格列酮和氟比洛芬中使用稳定的同位素质量位移过滤与高分辨率质谱的计算药物代谢物检测

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The identification of metabolites in drug discovery is important. At present, radioisotopes and mass spectrometry are both widely used. However, rapid and comprehensive identification is still laborious and difficult. In this study, we developed new analytical software and employed a stable isotope as a tool to identify drug metabolites using mass spectrometry. A deuterium-labeled compound and non-labeled compound were both metabolized in human liver microsomes and analyzed by liquid chromatography/time-of-flight mass spectrometry (LC-TOF-MS). We computationally aligned two different MS data sets and filtered ions having a specific mass-shift equal to masses of labeled isotopes between those data using our own software. For pioglitazone and flurbiprofen, eight and four metabolites, respectively, were identified with calculations of mass and formulas and chemical structural fragmentation analysis. With high resolution MS, the approach became more accurate. The approach detected two unexpected metabolites in pioglitazone, i.e., the hydroxypropanamide form and the aldehyde hydrolysis form, which other approaches such as metabolite-biotransformation list matching and mass defect filtering could not detect. We demonstrated that the approach using computational alignment and stable isotopic mass-shift filtering has the ability to identify drug metabolites and is useful in drug discovery.
机译:药物发现中代谢物的鉴定很重要。目前,放射性同位素和质谱都被广泛使用。但是,快速而全面的识别仍然是艰巨而困难的。在这项研究中,我们开发了新的分析软件,并使用稳定的同位素作为使用质谱法鉴定药物代谢物的工具。氘标记的化合物和未标记的化合物均在人肝微粒体中代谢,并通过液相色谱/飞行时间质谱(LC-TOF-MS)进行分析。我们使用我们自己的软件,对两个不同的MS数据集和经过过滤的离子进行了计算对齐,这些离子的特定质量偏移等于这些数据之间标记的同位素的质量。对于吡格列酮和氟比洛芬,分别通过质量和配方计算以及化学结构碎片分析确定了八种和四种代谢物。使用高分辨率MS,该方法变得更加准确。该方法在吡格列酮中检测到两种意外的代谢物,即羟基丙酰胺形式和醛水解形式,而其他方法(如代谢物-生物转化列表匹配和质量缺陷过滤)则无法检测到。我们证明了使用计算比对和稳定同位素质量转移过滤的方法具有识别药物代谢物的能力,可用于药物发现。

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