In vitro and in vivo studies on the metabolism and pharmacokinetics of the selective gut microbial β-glucuronidase targeting compound Inh 1.

IF 1.3 4区 医学 Q4 PHARMACOLOGY & PHARMACY Xenobiotica Pub Date : 2024-06-01 Epub Date: 2024-06-12 DOI:10.1080/00498254.2024.2357765
Anna Kerins, Phil Butler, Rob Riley, Marta Koszyczarek, Caroline Smith, Faye Cruickshank, Vamsi Madgula, Nilkanth Naik, Matthew R Redinbo, Ian D Wilson
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Abstract

In vitro studies using rat, mouse, and human microsomes and hepatocytes on the bacterial β-glucuronidase inhibitor 1-((6,8-dimethyl-2-oxo-1,2-dihydroquinolin-3-yl)methyl)-3-(4-ethoxyphenyl)-1-(2-hydroxyethyl)thiourea) (Inh 1) revealed extensive metabolism in all species.The intrinsic clearances of Inh 1 in human, mouse, and rat hepatic microsomes were 30.9, 67.8, and 201 µL/min/mg, respectively. For intact hepatocytes intrinsic clearances of 21.6, 96.0, and 129 µL/min/106 cells were seen for human, mouse and rat, respectively.The metabolism of Inh 1 involved an uncommon desulphurisation reaction in addition to oxidation, deethylation, and conjugation reactions at multiple sites. Six metabolites were detected in microsomal incubations in human and rat, and seven for the mouse. With hepatocytes, 18 metabolites were characterised, 9 for human, and 11 for mouse and rat.Following IV administration to mice (3 mg/kg), plasma concentrations of Inh 1 exhibited a monophasic decline with a terminal elimination half-life of 0.91 h and low systemic clearance (11.8% of liver blood flow). After PO dosing to mice (3 mg/kg), peak observed Inh 1 concentrations of 495 ng/mL were measured 0.5 h post dose, declining to under 10 ng/mL at 8 h post dose. The absolute oral bioavailability of Inh 1 in the mouse was ca. 26%.

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关于选择性肠道微生物 β-葡萄糖醛酸酶靶向化合物 Inh 1 的代谢和药代动力学的体外和体内研究。
利用大鼠、小鼠和人的微粒体和肝细胞对细菌 β-葡糖醛酸酶抑制剂(1-((6,8-二甲基-2-氧代-1,2-二氢喹啉-3-基)甲基)-3-(4-乙氧基苯基)-1-(2-羟乙基)硫脲)(Inh 1)进行的体外研究显示,该抑制剂在所有物种中都有广泛的新陈代谢。Inh 1 在人、小鼠和大鼠肝微粒体中的内在清除率分别为 30.9、67.8 和 201 µL/分钟/毫克。在完整肝细胞中,人、小鼠和大鼠的固有清除率分别为 21.6、96.0 和 129 µL/min/106 cells。 Inh 1 的新陈代谢除了在多个位点发生氧化、脱乙基和共轭反应外,还涉及不常见的脱硫反应。在人和大鼠的微粒体培养液中检测到六种代谢物,在小鼠的微粒体培养液中检测到七种代谢物。小鼠静脉注射(3 毫克/千克)后,Inh 1 的血浆浓度呈双指数下降,最终消除半衰期为 0.91 小时,全身清除率低(占肝血流量的 11.8%)。小鼠经口服给药(3 毫克/千克)后,在给药后 0.5 小时测得 Inh 1 的峰值浓度为 495 纳克/毫升,在给药后 8 小时降至 10 纳克/毫升以下。Inh 1 在小鼠体内的绝对口服生物利用度约为 26%。
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来源期刊
Xenobiotica
Xenobiotica 医学-毒理学
CiteScore
3.80
自引率
5.60%
发文量
96
审稿时长
2 months
期刊介绍: Xenobiotica covers seven main areas, including:General Xenobiochemistry, including in vitro studies concerned with the metabolism, disposition and excretion of drugs, and other xenobiotics, as well as the structure, function and regulation of associated enzymesClinical Pharmacokinetics and Metabolism, covering the pharmacokinetics and absorption, distribution, metabolism and excretion of drugs and other xenobiotics in manAnimal Pharmacokinetics and Metabolism, covering the pharmacokinetics, and absorption, distribution, metabolism and excretion of drugs and other xenobiotics in animalsPharmacogenetics, defined as the identification and functional characterisation of polymorphic genes that encode xenobiotic metabolising enzymes and transporters that may result in altered enzymatic, cellular and clinical responses to xenobioticsMolecular Toxicology, concerning the mechanisms of toxicity and the study of toxicology of xenobiotics at the molecular levelXenobiotic Transporters, concerned with all aspects of the carrier proteins involved in the movement of xenobiotics into and out of cells, and their impact on pharmacokinetic behaviour in animals and manTopics in Xenobiochemistry, in the form of reviews and commentaries are primarily intended to be a critical analysis of the issue, wherein the author offers opinions on the relevance of data or of a particular experimental approach or methodology
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