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Elucidation of the in vitro metabolic profile of stable isotope labeled BAL19403 by accurate mass capillary liquid chromatography/quadrupole time-of-flight mass spectrometry and isotope exchange

机译:通过精确的质谱毛细管液相色谱/四极杆飞行时间质谱和同位素交换阐明稳定同位素标记的BAL19403的体外代谢谱

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The in vitro metabolic pattern o BAL19403, a novel macrolide antibiotic, was investigated by capillary liquid chromatography/quadrupole time-of-flight mass spectrometry (LC/QTOF-MS) in incubations with human microsomes. For the elucidation of the metabolic pathway, BAL19403 labeled with four deuterium atoms (134) was used, and detection of metabolites performed using mixtures of the unlabeled (H-4) BAL19403 and its D-4 analogue (1:1) as substrate. All metabolites appeared with similar chromatographic behavior. MS/MS spectra of BAL19403 and its metabolites are dominated by non-informative fragment ions. Therefore, the structure of the metabolites was elucidated mainly by accurate mass measurements with subsequent proposals of elemental compositions. Main biotransformations were N-demethylation, lactone ring hydrolysis, and oxidation. Additionally, N-dealkylation of the aromatic moiety was identified. This dealkylation results not only in formation of an aldehyde, according to the classical pathway, but also in formation of the corresponding alcohol and carboxylic acid. Final elucidation of their structures was possible, since this dealkylation takes place vicinal to the deuterium-labeled part of BAL19403 and interferes with D/H exchange. The degree of D/H exchange, determined by analysis of the metabolite isotopic pattern, was used to elucidate the adjacent functional group. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:通过毛细管液相色谱/四极杆飞行时间质谱(LC / QTOF-MS)在与人微粒体孵育中研究了新型大环内酯类抗生素BAL19403的体外代谢模式。为了阐明代谢途径,使用了用四个氘原子标记的BAL19403(134),并使用未标记的(H-4)BAL19403及其D-4类似物(1:1)的混合物作为底物进行了代谢物检测。所有代谢物均具有相似的色谱行为。 BAL19403及其代谢物的MS / MS谱图以非信息性碎片离子为主。因此,主要通过精确的质量测量以及随后的元素组成提议来阐明代谢物的结构。主要的生物转化是N-脱甲基,内酯环水解和氧化。另外,鉴定出芳族部分的N-脱烷基。根据经典途径,该脱烷基不仅导致醛的形成,而且导致相应的醇和羧酸的形成。最终阐明其结构是可能的,因为这种脱烷基作用发生在BAL19403氘标记部分附近,并干扰D / H交换。通过分析代谢物同位素模式确定的D / H交换程度用于阐明相邻的官能团。版权所有(c)2007 John Wiley&Sons,Ltd.

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