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Pyrazoles as inhibitors of alcohol oxidation and as important tools in alcohol research: An approach to therapy against methanol poisoning

机译:吡唑类化合物作为酒精氧化抑制剂和酒精研究的重要工具:一种抗甲醇中毒的治疗方法

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摘要

4-Methylpyrazole, in a dose producing inhibition of alcohol dehydrogenase (alcohol:NAD+ oxidoreductase, EC 1.1.1.1), was given alone or together with ethanol (10%) as sole drinking fluid to growing rats for up to 38 weeks. Their weight curves remained normal. Electron microscopy of liver, kidney, and heart revealed no changes related to treatment. Hematologic analysis showed normal values for blood and bone marrow. Several clinical chemical parameters showed no impairment of liver or kidney function, except for an enhancement of the microsomal drug-metabolizing activity after concurrent administration of 4-methylpyrazole and ethanol. A study on rats receiving 4-methylpyrazole and ethanol indicated a mutual interaction of the two compounds or the metabolites, leading to increased concentration in the blood of the compounds and reduced formation of 4-hydroxymethylpyrazole, the primary metabolite of 4-methylpyrazole. In monkeys, elimination of 4-methylpyrazole followed a linear course. 4-Hydroxymethylpyrazole accumulated to a level of at most 10% of that of 4-methylpyrazole. Concurrent administration of methanol inhibited the elimination of 4-methylpyrazole about 25%, and 4-methylpyrazole produced a profound inhibition of the oxidation of methanol. 4-Methylpyrazole, at a level in the plasma of more than 10 μM, prevented accumulation of the toxic metabolite formic acid in methanol-poisoned monkeys, and repeated injections of 4-methylpyrazole abolished methanol toxicity in monkeys receiving lethal doses of methanol. The present investigation indicates that 4-methylpyrazole, with its low toxicity and strong inhibition of alcohol oxidation, is a valuable tool for experimental studies of alcohol metabolism and its effects. It illustrates the usefulness of the monkey as a model to study 4-methylpyrazole activity and toxicity in light of its possible use for treating methanol poisoning in human beings.
机译:单独或与乙醇(10%)一起将4-甲基吡唑以产生抑制酒精脱氢酶(酒精:NAD +氧化还原酶,EC 1.1.1.1)的剂量给成长中的大鼠长达38周。他们的体重曲线保持正常。肝,肾和心脏的电子显微镜检查未发现与治疗有关的变化。血液学分析显示血液和骨髓的正常值。几个临床化学参数没有显示肝或肾功能的损害,除了在同时服用4-甲基吡唑和乙醇后提高了微粒体药物的代谢活性。对接受4-甲基吡唑和乙醇的大鼠进行的一项研究表明,两种化合物或代谢物之间存在相互作用,从而导致血液中这些化合物的浓度增加,并减少了4-羟甲基吡唑(4-甲基吡唑的主要代谢物)的形成。在猴子中,消除4-甲基吡唑呈线性过程。 4-羟基甲基吡唑的积累量最多为4-甲基吡唑的10%。同时施用甲醇抑制了约25%的4-甲基吡唑的消除,而4-甲基吡唑对甲醇的氧化产生了深远的抑制作用。血浆中浓度超过10μM的4-甲基吡唑可防止有毒代谢产物甲酸在甲醇中毒的猴子中积聚,并且反复注射4-甲基吡唑可消除接受致死剂量甲醇的猴子中的甲醇毒性。本研究表明4-甲基吡唑具有低毒性和对醇氧化的强烈抑制作用,是用于醇代谢及其作用的实验研究的有价值的工具。它说明了猴子作为研究4-甲基吡唑活性和毒性的模型的有用性,因为它可能用于治疗人类的甲醇中毒。

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