首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Metabolism of 3,5,5-trimethylhexanoyl-ferrocene by rat liver: release of iron from 3,5,5-trimethylhexanoyl-ferrocene by a microsomal, phenobarbital-inducible cytochrome P-450.
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Metabolism of 3,5,5-trimethylhexanoyl-ferrocene by rat liver: release of iron from 3,5,5-trimethylhexanoyl-ferrocene by a microsomal, phenobarbital-inducible cytochrome P-450.

机译:大鼠肝脏代谢3,5,5-三甲基己酰基二茂铁:通过微粒体,苯巴比妥诱导的细胞色素P-450从3,5,5-三甲基己酰基二茂铁中释放铁。

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摘要

3,5,5-Trimethylhexanoyl (TMH)-ferrocene has been used to produce iron loading in whole animals and in cultured hepatocytes. Iron loading produced by TMH-ferrocene is highly efficient and, of the compounds used to produce iron loading in experimental systems, most closely mimics the loading patterns observed in the human disease hemochromatosis. Previous work with TMH-ferrocene has shown that TMH-ferrocene is degraded in vivo because the iron is released from the ferrocene nucleus. Because TMH-ferrocene is highly lipophilic and stable chemically, we hypothesize that this molecule indeed could be degraded enzymatically. To measure the breakdown of TMH-ferrocene, iron release from the molecule was analyzed using a Ferrochem II analyzer, which uses constant potential coulometry to measure the amount of ionic iron within a biological sample. In this study, we show that TMH-ferrocene is degraded by a microsomal enzyme that requires NADPH and molecular oxygen. The TMH-ferrocenase activity is heat labile, requires a physiologic temperature, is induced by phenobarbital, and is inhibited by carbon monoxide and piperonyl butoxide but not by dicoumarol. The enzyme follows Michaelis-Menten kinetics and has a Km of 58.5 microM and a Vmax of 57.5 nmol Fe released/mg protein/min. We conclude that TMH-ferrocene is degraded by a phenobarbital-inducible cytochrome P-450.
机译:3,5,5-三甲基己酰基(TMH)-二茂铁已用于在整个动物和培养的肝细胞中产生铁负载。由TMH-二茂铁产生的铁负载非常有效,并且在用于在实验系统中产生铁负载的化合物中,最紧密地模仿了人类疾病血色素沉着病中观察到的负载模式。以前使用TMH-二茂铁进行的研究表明,TMH-二茂铁在体内可降解,因为铁是从二茂铁核中释放出来的。因为TMH-二茂铁具有很高的亲脂性和化学稳定性,所以我们假设该分子确实可以被酶降解。为了测量TMH-二茂铁的分解,使用Ferrochem II分析仪分析了分子中铁的释放,该分析仪使用恒电位库仑法测量生物样品中离子铁的含量。在这项研究中,我们表明TMH-二茂铁被需要NADPH和分子氧的微粒体酶降解。 TMH-二茂铁酶活性不稳定,需要生理温度,由苯巴比妥诱导,并被一氧化碳和胡椒基丁醇抑制,但不被二香豆酚抑制。该酶遵循Michaelis-Menten动力学,Km为58.5 microM,Vmax为57.5 nmol Fe释放量/ mg蛋白质/分钟。我们得出结论,苯巴比妥诱导的细胞色素P-450降解了TMH-二茂铁。

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