首页> 外文期刊>Journal of the Mass Spectrometry Society of Japan >Identification of Gemfibrozil Metabolites, Produced as Positional Isomers in Human Liver Microsomes, by On-line Analyses Using Liquid Chromatography/Mass Spectrometry and Liquid Chromatography/Nuclear Magnetic Resonance Spectroscopy
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Identification of Gemfibrozil Metabolites, Produced as Positional Isomers in Human Liver Microsomes, by On-line Analyses Using Liquid Chromatography/Mass Spectrometry and Liquid Chromatography/Nuclear Magnetic Resonance Spectroscopy

机译:使用液相色谱/质谱和液相色谱/核磁共振波谱在线分析鉴定在人肝微粒体中作为位置异构体产生的吉非贝齐代谢物

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Liquid chromatography/mass spectrometry (LC/MS) and liquid chromatographyuclear magnetic resonance spectroscopy (LC/NMR) were applied to the identification of the positional isomers of gemfibrozil metabolites produced in vitro by human liver microsomes. Gemfibrozil was metabolized to two major oxidative metabolites (M1 and M2) by human liver microsomes in the presence of an nicotinamide adenine dinucleotide phosphate, reduced form (NADPH)-generating system. M1 and M2 were characterized as metabolites formed by the oxidation of the 2′,5′-dimethylphenoxy moiety, which has potentially 5 different positions for hydroxylation, based on the results of negative-ion tandem mass spectrometry in combination with those of accurate mass measurements by quadrupole time-of-flight mass spectrometry. Separation and identification of M1 and M2 were conducted by LC/NMR analyses at 500 MHz. An on-flow ~1H NMR analysis demonstrated that M1 was produced by hydroxylation at either the 2′-methyl group or the 5′-methyl group and M2 by hydroxylation at either the 3′-C or the 4′-C position of the aromatic ring. A stop-flow nuclear Overhauser effect spectroscopy (NOESY) analysis demonstrated that M1 and M2 were metabolites hydroxylated at the 5′-methyl group and the 4′-C position of the aromatic ring, respectively.
机译:液相色谱/质谱(LC / MS)和液相色谱/核磁共振波谱(LC / NMR)用于鉴定人肝微粒体体外产生的吉非贝齐代谢物的位置异构体。在存在烟酰胺腺嘌呤二核苷酸磷酸还原形式(NADPH)生成系统的情况下,人肝微粒体将吉非贝齐代谢为两种主要的氧化代谢物(M1和M2)。 M1和M2被表征为由2',5'-二甲基苯氧基部分氧化形成的代谢物,基于负离子串联质谱的结果结合精确的质量测量结果,该羟基可能具有5个不同的羟基位置四极杆飞行时间质谱M1和M2的分离和鉴定通过500 MHz的LC / NMR分析进行。流动〜1H NMR分析表明,M1是通过2'-甲基或5'-甲基的羟基化反应生成的,M2是通过羟基在3'-C或4'-C位置的羟基化生成的。芳香环。停止流核Overhauser效应光谱(NOESY)分析表明,M1和M2分别是在芳香环的5'-甲基和4'-C位置羟基化的代谢物。

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