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特罗地林的生物转化。III. 大鼠肝微粒体中苄基和芳香羟基化反应的相反立体选择性

Biotransformation of terodiline. III. Opposed stereoselectivity in the benzylic and aromatic hydroxylations in rat liver microsomes.

作者信息

Lindeke B, Ericsson O, Jönsson A, Noren B, Strömberg S, Vangbo B

机构信息

Analytical Department R & D, KabiVitrum AB, Stockholm, Sweden.

出版信息

Xenobiotica. 1987 Nov;17(11):1269-78. doi: 10.3109/00498258709047158.

Abstract
  1. Terodiline (N-tert-butyl-4,4-diphenyl-2-butylamine) is a racemic drug with anticholinergic and/or calcium antagonistic activity, which is subject to renewed interest as a potential remedy for urinary incontinence. As part of the current investigations on terodiline, the metabolism of its enantiomers is being investigated. 2. The metabolism of the enantiomers of terodiline in rat liver microsomes is slow, as for the racemate, though the S-enantiomer is metabolized more rapidly than its optical antipode. Phenobarbitone pretreatment of the rats enhances the metabolism with a marked increase in the conversion of the S-enantiomer. 3. While aromatic p-hydroxylation greatly exceeds benzylic oxidation in the metabolism of R-terodiline, this situation is reversed in the metabolism of S-terodiline. Moreover, the rate of aromatic p-hydroxylation of racemic terodiline follows that of R-terodiline, while the rate of benzylic hydroxylation of racemic terodiline follows that of S-terodiline. Phenobarbital pretreatment of the rats had little or no effect on aromatic p-hydroxylation but markedly increased benzylic oxidation. 4. Separation of the mixture of p-hydroxylated metabolites into diastereomeric pairs showed that their composition is highly dependent on which form of terodiline is used as substrate. 5. The results from the study are compatible with the participation of multiple forms of cytochrome P-450 enzymes.
摘要
  1. 特罗地林(N-叔丁基-4,4-二苯基-2-丁胺)是一种具有抗胆碱能和/或钙拮抗活性的消旋药物,作为尿失禁的潜在治疗药物正重新受到关注。作为目前对特罗地林研究的一部分,正在研究其对映体的代谢情况。2. 特罗地林对映体在大鼠肝微粒体中的代谢与消旋体一样缓慢,不过S-对映体的代谢速度比其旋光对映体更快。用苯巴比妥预处理大鼠可增强代谢,S-对映体的转化显著增加。3. 在R-特罗地林的代谢中,芳香族对羟基化大大超过苄基氧化,但在S-特罗地林的代谢中情况则相反。此外,消旋特罗地林的芳香族对羟基化速率与R-特罗地林的一致,而消旋特罗地林的苄基羟基化速率与S-特罗地林的一致。用苯巴比妥预处理大鼠对芳香族对羟基化几乎没有影响,但显著增加了苄基氧化。4. 将对羟基化代谢物混合物分离成非对映体对表明,它们的组成高度依赖于用作底物的特罗地林的形式。5. 该研究结果与多种形式的细胞色素P-450酶参与其中相符。

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