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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 >The metabolism of (14C)-zibotentan (ZD4054) in rat, dog and human, the loss of the radiolabel and the identification of an anomalous peak, derived from the animal feed.
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The metabolism of (14C)-zibotentan (ZD4054) in rat, dog and human, the loss of the radiolabel and the identification of an anomalous peak, derived from the animal feed.

机译:(14C)-zibotentan(ZD4054)在大鼠,狗和人类中的代谢,其放射性标记的损失和异常峰的鉴定,均来自动物饲料。

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This paper presents an overview of a cross-species investigation of the metabolic fate of [(14)C]-zibotentan (ZD4054), with particular focus on the main analytical challenges encountered during the study. A combination of detection methods were used including HPLC coupled to UV, RAD and/or MS(MS), and (1)H NMR spectroscopy. The objective was to characterise and identify the major metabolites found in the circulation and excreta of rat and dog for comparison with those produced in human. Initial investigations in rat, using [(14)C]-labelled zibotentan positioned on the oxadiazole ring and HPLC-UV-RAD analysis, revealed seven labelled resolved metabolite peaks. Parallel analysis by HPLC-UV-MS (with in-source fragmentation) uncovered two additional metabolites, indicating loss of the radiolabel during biotransformation. Hence, in subsequent studies in rat, dog and human, dual-radiolabelled zibotentan was employed with the (14)C-label positioned on the pyridine ring, which was shown to be less prone to metabolism. A total of 12 metabolites were found in the excreta and plasma in all species. One of these metabolites was found in the circulation in humans, which warranted further investigations. Characterisation of the isolated human circulating metabolite by (1)H NMR was complicated by the co-extraction of a matrix component with a similar UV-chromophore to zibotentan, which was identified as daidzein, an isoflavone derived from the animal feed.
机译:本文概述了[(14)C] -zibotentan(ZD4054)的代谢命运的跨物种调查,特别是研究期间遇到的主要分析挑战。使用了多种检测方法的组合,包括与UV,RAD和/或MS(MS)耦合的HPLC和(1)H NMR光谱。目的是鉴定和鉴定在大鼠和狗的循环和排泄物中发现的主要代谢物,以便与人产生的代谢物进行比较。在大鼠中的初步研究使用位于恶二唑环上的[(14)C]标记的zibotentan和HPLC-UV-RAD分析,揭示了七个标记的分解代谢物峰。通过HPLC-UV-MS(带有源内裂解)的平行分析发现了另外两种代谢物,表明在生物转化过程中放射性标记的损失。因此,在随后的对大鼠,狗和人的研究中,使用了双放射性标记的zibotentan,其(14)C标签位于吡啶环上,这表明它不易代谢。在所有物种的排泄物和血浆中共发现12种代谢物。在人体循环中发现了其中一种代谢物,值得进一步研究。通过(1)H NMR对分离出的人类循环代谢物进行表征,是因为将具有与zibotentan相似的UV发色团的基质组分共萃取出来,而该组分被认为是黄豆苷元,黄豆苷元是一种从动物饲料中提取的异黄酮。

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