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测定大鼠和人体内二甲基和氧乐果代谢的酶动力学。

Determination of enzymatic kinetics of metabolism of dimethoate and omethoate in rats and humans.

机构信息

FMC Corporation, Philadelphia, PA, USA.

Frontage Laboratories Inc, Exton, PA, USA.

出版信息

Xenobiotica. 2023 Apr;53(4):279-287. doi: 10.1080/00498254.2023.2228904. Epub 2023 Jul 3.

Abstract
  1. Dimethoate is an organophosphate insecticide. The objective of this work was to determine the enzymatic kinetics of metabolism of dimethoate and its active metabolite omethoate in rats and humans and obtain key input parameters for physiologically based pharmacokinetic (PBPK) model.2. First, the intrinsic clearance of dimethoate expressed as formation rate of omethoate was determined to be ∼42-fold lower in human liver microsomes (HLM) (0.39 µL/min/mg) than in rat liver microsomes (RLM) (16.6 µL/min/mg) by an LC/MS/MS method. Next, dimethoate clearance in liver microsomes was determined using parent depletion and total [C]-metabolite formation methods. Results from both approaches showed slower clearance of dimethoate in HLM (1.1-3.3 µL/min/mg) than in RLM (12.7-17.4 µL/min/mg).3. Investigation of enzymatic kinetics of omethoate demonstrated that the intrinsic clearance rates for omethoate in adult and juvenile RLM and HLM were similar. No significant turnover of dimethoate was apparent in rat cytosol or plasma. In contrast, degradation of omethoate in human plasma was slightly higher than in rat plasma.4. Finally, toxicokinetics of dimethoate were determined in adult and juvenile rats. In both age groups, following oral dosing, absorption of dimethoate was rapid with formation of significant amounts of omethoate.
摘要
  1. 乐果是一种有机磷杀虫剂。本工作的目的是确定乐果及其活性代谢物氧乐果在大鼠和人体中的代谢酶动力学,并获得用于生理基于药代动力学(PBPK)模型的关键输入参数。

  2. 首先,通过 LC/MS/MS 方法测定人肝微粒体(HLM)中乐果形成率表示的内在清除率(以 omethoate 的形成速率表示)约为大鼠肝微粒体(RLM)的 42 倍(0.39μL/min/mg)。接下来,使用母体耗竭和总 [C]-代谢物形成方法测定肝微粒体中的乐果清除率。两种方法的结果均表明 HLM 中的乐果清除率较慢(1.1-3.3μL/min/mg),而 RLM 中的乐果清除率较快(12.7-17.4μL/min/mg)。

  3. 对氧乐果的酶动力学研究表明,成年和幼年 RLM 和 HLM 中氧乐果的内在清除率相似。在大鼠细胞溶胶或血浆中,没有明显的乐果转化。相比之下,在人血浆中,氧乐果的降解略高于大鼠血浆。

  4. 最后,在成年和幼年大鼠中测定了乐果的毒代动力学。在两个年龄组中,口服给药后,乐果的吸收迅速,形成大量的氧乐果。

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