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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Metabolite characterization of ambrisentan, in in vitro and in vivo matrices by UHPLC/QTOF/MS/MS: Detection of glutathione conjugate of epoxide metabolite evidenced by in vitro GSH trapping assay
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Metabolite characterization of ambrisentan, in in vitro and in vivo matrices by UHPLC/QTOF/MS/MS: Detection of glutathione conjugate of epoxide metabolite evidenced by in vitro GSH trapping assay

机译:通过UHPLC / QTOF / MS / MS在体外和体内矩阵中的Ambrisentan的代谢物表征/ MS / MS:体外GSH诱捕测定检测氧化环氧化酯代谢物的谷胱甘肽缀合物

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摘要

The focus of the present study is on in vitro and in vivo metabolite identification of ambrisentan (AMBR) a selective endothelin type -A (ETA) receptor antagonist using quadruple time-of-flight mass spectrometry (QTOF/MS). in vitro metabolism study was conducted by incubating AMBR in rat liver microsomes (RLM), rat and human liver S9 fractions. In vivo study was carried out through the collection of urine, faeces and plasma samples at various time points after oral administration of AMBR in suspension form at a dose of 25 mg/kg to six male Sprague - Dawley (SD) rats. The samples were prepared using an optimized sample preparation techniques involving protein precipitation (PP), freeze liquid extraction (FLE) and solid phase extraction (SPE). The extracted samples were further concentrated and analyzed by developing a sensitive and specific liquid chromatography-mass spectrometry (LC-MS) method. A total of seventeen metabolites were identified in in vivo samples which includes hydroxyl, demethylated, demethoxylated, hydrolytic, decarboxylated, epoxide and glucuronide metabolites. Most of the metabolites were observed in faeces and urine matrices and few were observed in the plasma matrix. Only ten metabolites were identified in in vitro study which was commonly observed in in vivo study. The detailed structural elucidation of all the metabolites was done using UHPLC/QTOF/MS/MS in combination with accurate mass measurements. The toxicity profile of AMBR and its metabolites were predicted using TOPKAT software. In addition, a mass spectrometric method was developed for the detection and characterization of GSH-trapped reactive epoxide metabolitein human liver S9 fraction supplemented with glutathione (GSH) as trapping agent. (C) 2018 Elsevier B.V. All rights reserved.
机译:本研究的重点是在体外和体内代谢物鉴定Ambrisentan(AMBR)一种选择性内皮素型-A(ETA)受体拮抗剂,使用二次飞行时间质谱法(QTOF / MS)。通过在大鼠肝微粒体(RLM),大鼠和人肝S9级分中孵育AMBR来进行体外代谢研究。在体内研究通过在口服悬浮液在25mg / kg至六个雄性Sprague - Dawley(SD)大鼠的悬浮形式后的各个时间点进行尿液,粪便和血浆样品进行尿液,粪便和血浆样品。使用涉及蛋白质沉淀(PP)的优化样品制备技术,冷冻液提取(FLE)和固相萃取(SPE)制备样品。通过显影敏感和特异性液相色谱 - 质谱(LC-MS)方法,进一步浓缩提取的样品并分析。在体内样品中鉴定了总共具有十七种代谢物,其包括羟基,去甲基化,去甲氧化,水解,脱羧,环氧化物和葡糖醛酸代谢物。在粪便中观察到大部分代谢物,并且在血浆基质中观察到尿基质。在体外研究中仅鉴定出十种代谢物,其在体内研究中通常观察到。所有代谢物的详细结构阐明使用UHPLC / QTOF / MS / MS与精确的质量测量结合使用。使用Topkat软件预测了AMBR的毒性分布及其代谢物。此外,开发了一种质谱法,用于检测和表征GSH被捕获的反应性环氧化物代谢人肝S9分数,补充有谷胱甘肽(GSH)作为捕获剂。 (c)2018年elestvier b.v.保留所有权利。

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