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首页> 外文期刊>Chemical research in toxicology >Development of metabolically stable inhibitors of Mammalian microsomal epoxide hydrolase.
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Development of metabolically stable inhibitors of Mammalian microsomal epoxide hydrolase.

机译:代谢稳定的哺乳动物微粒体环氧化物水解酶抑制剂的开发。

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The microsomal epoxide hydrolase (mEH) plays a significant role in the metabolism of xenobiotics such as polyaromatic toxicants. Additionally, polymorphism studies have underlined a potential role of this enzyme in relation to a number of diseases, such as emphysema, spontaneous abortion, eclampsia, and several forms of cancer. We recently demonstrated that fatty amides, such as elaidamide, represent a new class of potent inhibitors of mEH. While these compounds are very active on recombinant mEH in vitro, they are quickly inactivated in liver extracts reducing their value in vivo. We investigated the effect of structural changes on mEH inhibition potency and microsomal stability. Results obtained indicate that the presence of a small alkyl group alpha to the terminal amide function and a thio-ether beta to this function increased mEH inhibition by an order of magnitude while significantly reducing microsomal inactivation. The addition of a hydroxyl group 9-10 carbons from the terminal amide function resulted in better inhibition potency without improving microsomal stability. The best compound obtained, 2-nonylsulfanyl-propionamide, is a competitive inhibitor of mEH with a K I of 72 nM. Furthermore, this new inhibitor significantly reduces mEH diol production in ex vivo lungs exposed to naphthalene, underlying the usefulness of the inhibitors described herein. These novel inhibitors could be valuable tools to investigate the physiological and biological roles of mEH.
机译:微粒体环氧化物水解酶(mEH)在异源生物(例如多环芳族毒物)的代谢中起重要作用。此外,多态性研究强调了这种酶在许多疾病中的潜在作用,例如肺气肿,自然流产,子痫和几种癌症。最近,我们证明了脂肪酰胺,例如依莱酰胺,代表了一类新型的mEH高效抑制剂。尽管这些化合物在体外对重组mEH具有非常高的活性,但它们在肝提取物中迅速失活,从而降低了其在体内的价值。我们调查了结构变化对mEH抑制效能和微粒体稳定性的影响。获得的结果表明,末端酰胺功能的小烷基α和该功能的硫醚β的存在将mEH抑制提高了一个数量级,同时显着减少了微粒体的失活。从末端酰胺官能团添加9-10个羟基的羟基导致更好的抑制效力,而没有改善微粒体的稳定性。获得的最佳化合物2-壬基硫烷基-丙酰胺是竞争性mEH抑制剂,K I为72 nM。此外,这种新抑制剂显着降低了暴露于萘的离体肺中mEH二醇的产生,这是本文所述抑制剂的有用性的基础。这些新型抑制剂可能是研究mEH的生理和生物学作用的有价值的工具。

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