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首页> 外文期刊>Journal of mass spectrometry: JMS >Detection and characterization of ticlopidine conjugates in rat bile using high-resolution mass spectrometry: Applications of various data acquisition and processing tools
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Detection and characterization of ticlopidine conjugates in rat bile using high-resolution mass spectrometry: Applications of various data acquisition and processing tools

机译:使用高分辨率质谱法检测和鉴定大鼠胆汁中噻氯匹定结合物:各种数据采集和处理工具的应用

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Ticlopidine, an antiplatelet drug, undergoes extensive oxidative metabolism to form S-oxide, N-oxide, hydroxylated and dealkylated metabolites. However, metabolism of ticlopidine via conjugation has not been thoroughly investigated. In this study, multiple data acquisition and processing tools were applied to the detection and characterization of ticlopidine conjugates in rat bile. Accurate full-scan mass spectrometry (MS) and collision-induced dissociation (CID) MS/MS data sets were recorded using isotope pattern-dependent acquisition on an LTQ/Orbitrap system. In addition, mass spectral data from online H/D exchanging and high collision energy dissociation (HCD) were recorded. Data processes were carried out using extracted ion chromatography (EIC), mass defect filter (MDF) and isotope pattern filter (IPF). The total ion chromatogram displayed a few major conjugated metabolites and many endogenous components. Profiles from EIC and IPF processes exhibited multiple conjugates with no or minimal false positives. However, ticlopidine conjugates that were not predictable or lost a chorine atom were not found by EIC or IPF, respectively. MDF was able to detect almost all of ticlopidine conjugates although it led to a few more false positives. In addition to CID spectra, data from HCD, H/D exchanging experiments and isotope pattern simulation facilitated structural characterization of unknown conjugates. Consequently, 20 significant ticlopidine conjugates, including glucuronide, glutathione, cysteinylglycine, cysteine and N-acetylcysteine conjugates, were identified in rat bile, a majority of which are associated with bioactivation and not previously reported. This study demonstrates the utility and limitation of various high-resolution MS-based data acquisition and processing techniques in detection and characterization of conjugated metabolites.
机译:噻氯匹定是一种抗血小板药物,会经历广泛的氧化代谢,从而形成S-氧化物,N-氧化物,羟基化和脱烷基化的代谢产物。然而,尚未彻底研究噻氯匹定通过结合的代谢。在这项研究中,多种数据采集和处理工具被应用于大鼠胆汁中噻氯匹定结合物的检测和表征。准确的全扫描质谱(MS)和碰撞诱导解离(CID)MS / MS数据集是在LTQ / Orbitrap系统上使用同位素模式相关的采集来记录的。此外,还记录了来自在线H / D交换和高碰撞能量离解(HCD)的质谱数据。使用萃取离子色谱(EIC),质量缺陷过滤器(MDF)和同位素模式过滤器(IPF)进行数据处理。总离子色谱图显示了一些主要的共轭代谢产物和许多内源性组分。 EIC和IPF过程的配置文件显示出多种共轭物,没有或只有很少的假阳性。但是,EIC或IPF分别未发现不可预测或失去氯原子的噻氯匹定结合物。 MDF能够检测几乎所有的噻氯匹定结合物,尽管它导致了更多的假阳性。除CID光谱外,来自HCD,H / D交换实验和同位素模式模拟的数据还有助于未知共轭物的结构表征。因此,在大鼠胆汁中鉴定出20种重要的噻氯匹定结合物,包括葡糖醛酸,谷胱甘肽,半胱氨酰甘氨酸,半胱氨酸和N-乙酰基半胱氨酸结合物,其中大多数与生物激活有关,以前未见报道。这项研究证明了各种高分辨率基于MS的数据采集和处理技术在共轭代谢物检测和表征中的实用性和局限性。

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