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7-取代茶碱的人体代谢:N3-去甲基化及丙羟茶碱无氧化作用。

Human metabolism of 7-substituted theophyllines: N3-demethylation and lack of oxidation of proxyphylline.

作者信息

Tarrus E, Garcia I, Segura J

出版信息

J Pharm Sci. 1981 May;70(5):542-5. doi: 10.1002/jps.2600700520.

Abstract

Proxyphylline metabolism after oral administration to humans was studied. The only metabolic process detected was N3-demethylation, and 1-methyl-7-(2-hydroxypropyl)xanthine was isolated and identified. Proxyphylline was excreted in urine both an unchanged compound (12.7% of dose) and as its metabolic product (30.2% of dose). The latter substance was not found (detection limit = 1 microgram/ml) in the systemic circulation. Thus, it probably does not participate in the pharmacological activity of proxyphylline in vivo, although it was as active as the parent drug in relaxing the guinea pig tracheal chain. Lack of metabolism to uric acid derivatives is explained by the low affinity of both substances toward the enzymes the oxidize xanthine (xanthine oxidase) and methylxanthine derivatives. The presence of the metabolite in urine interferes with some analytical methods developed for estimation of unchanged proxyphylline. Published data on the urinary excretion of this drug need reevaluation.

摘要

研究了口服给药后人体对丙羟茶碱的代谢情况。检测到的唯一代谢过程是N3-去甲基化,并且分离并鉴定出了1-甲基-7-(2-羟丙基)黄嘌呤。丙羟茶碱以未变化的化合物(占剂量的12.7%)及其代谢产物(占剂量的30.2%)的形式经尿液排泄。在体循环中未发现后一种物质(检测限=1微克/毫升)。因此,尽管它在舒张豚鼠气管链方面与母体药物活性相当,但它可能不参与丙羟茶碱在体内的药理活性。两种物质对氧化黄嘌呤(黄嘌呤氧化酶)和甲基黄嘌呤衍生物的酶亲和力较低,这解释了缺乏向尿酸衍生物的代谢。尿液中代谢产物的存在干扰了一些为估算未变化的丙羟茶碱而开发的分析方法。关于该药物尿排泄的已发表数据需要重新评估。

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