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 >In vitrometabolic mapping of neobavaisoflavone in human cytochromes P450 and UDP-glucuronosyltransferase enzymes by ultra high-performance liquid chromatography coupled with quadrupole time-of-flight tandem mass spectrometry
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In vitrometabolic mapping of neobavaisoflavone in human cytochromes P450 and UDP-glucuronosyltransferase enzymes by ultra high-performance liquid chromatography coupled with quadrupole time-of-flight tandem mass spectrometry

机译:通过超高效液相色谱法偶联二溴吡喃氟氯酰硫酮在人细胞色谱中Neobavaisoflavone的葡萄粉醇测定,通过超高效液相色谱法与四极其飞行时间串联质谱法相结合

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摘要

Neobavaisoflavone (NBIF), a phenolic compound isolated from Psoralea corylifolia L., possesses several significant biological properties. However, the pharmacokinetic behaviors of NBIF have been characterized as rapid oral absorption, high clearance, and poor oral bioavailability. We found that NBIF underwent massive glucuronidation and oxidation by human liver microsomes (HLM) in this study with the intrinsic clearance (CLint) values of 12.43,10.04, 2.01, and 6.99 mu L/min/mg for M2, M3, M4, and M5, respectively. Additionally, the CLint values of G1 and G2 by HLM were 271.90 and 651.38 mu L/mm/mg, respectively, whereas their respective parameters were 59.96 and 949.01 mu L/min/mg by human intestine microsomes (HIM). Reaction phenotyping results indicated that CYP1A1, 1A2, 2C8, and 2C19 were the main contributors to M4 (34.96 mu L/min/mg), M3 (29.45 mu L/min/mg), M3 (13.16 mu L/mm/mg), and M2 (63.42 mu L/min/mg), respectively. UGT1A1, 1A7, 1A8, and 1A9 mainly catalyzed the formation of G1 (250.87 mu L/min/mg), G2 (438.15 mu L/min/mg), G1 (92.68 mu L/mm/mg), and G2 (1073.25 mu L/min/mg), respectively. Activity correlation analysis assays showed that phenacetin-N-deacetylation was strongly correlated to M3 (r= 0.860,p = 0.003) and M4 (r = 0.775, p = 0.014) in nine individual HLMs, while significant activity correlations were detected between pachtaxel-6-hydroxylation and M2 (r= 0.675, p = 0.046) and M3 (r=0.829, p = 0.006). There was a strong correlation between beta-estradiol-3-0-glucuromde and G1 (r = 0.822, p = 0.007) and G2 (r=0.689, p = 0.040), as well as between propofol-O-glucuronidation and G1 (r= 0.768, p = 0.016) and G2 (r= 0.860, p = 0.003). Moreover, the phase I metabolism and glucuronidation of NBIF revealed marked species differences, and mice are the best animal model for investigating the metabolism of NBIF in humans. Taken together, characterization of NBIF-related metabolic pathways involving in CYP1A1,1A2,2C8,2C19, and UGT1A1,1A7,1A8,1A9 are helpful for understanding the pharmacokinetic behaviors and conducting in-depth pharmacological studies. (C) 2018 Published by Elsevier B.V.
机译:Neobavaisoflavone(Nbif)是从Psoralea uorylifolia L中分离的酚类化合物,具有几种显着的生物学性质。然而,Nbif的药代动力学行为已经表征为快速的口服吸收,高间隙和口服差的生物利用度。我们发现Nbif在本研究中经历了人肝微粒体(HLM)的大量葡糖醛酸化和氧化,其内在间隙(克林特)值为12.43,10.04,2.01和6.99μmL/ min / mg用于M2,M3,M4和分别为m5。另外,通过HLM的G1和G2的克林特值分别为271.90和651.38μmL/ mm / mg,而这些参数分别为59.96和949.01μmL/ min / mg,由人肠微粒体(他)。反应表型结果表明,CYP1A1,1A2,2C8和2C19是M4(34.96μl/ min / mg)的主要贡献者,M3(29.45μl/ min / mg),M3(13.16μl/ mm / mg)分别为M2(63.42μmL/ min / mg)。 UGT1A1,1A7,1A8和1A9主要催化G1(250.87μl/ min / mg)的形成,G2(438.15μmL/ mm),G1(92.68μl/ mm / mg)和G2(1073.25亩l / min / mg)分别。活性相关性分析结果表明,在九个单独的HLM中,Phenacetin-N-脱乙酰化与M3(r = 0.860,p = 0.003)和M4(r = 0.775,p = 0.014)强烈相关,而在Pachtaxel之间检测到显着的活性相关性 - 6-羟基化和M2(r = 0.675,p = 0.046)和M3(r = 0.829,p = 0.006)。 β-雌二醇-3-0-葡萄糖蛋白酶和G1(r = 0.822,p = 0.007)和G2(r = 0.689,p = 0.040)之间存在良好的相关性,以及Photofol-O-葡糖醛酸和G1( r = 0.768,p = 0.016)和G2(r = 0.860,p = 0.003)。此外,Nbif的I阶段代谢和葡糖醛含有明显的物种差异,小鼠是用于研究人类中Nbif的代谢的最佳动物模型。连胜,表征涉及CYP1A1,1A2,2C8,2C19的NBIF相关的代谢途径,UGT1A1,1A7,1a8,1a9有助于理解药代动力学行为和进行深入的药理学研究。 (c)2018由elestvier b.v出版。

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