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利福霉素衍生物的诱导和自诱导特性:动物和人体研究综述

Induction and autoinduction properties of rifamycin derivatives: a review of animal and human studies.

作者信息

Strolin Benedetti M, Dostert P

机构信息

Pharmacia-Farmitalia Carlo Erba, R&D/Pharmacokinetics and Metabolism, Milan, Italy.

出版信息

Environ Health Perspect. 1994 Nov;102 Suppl 9(Suppl 9):101-5. doi: 10.1289/ehp.94102s9101.

Abstract

Animal studies have demonstrated that the mouse and rabbit are far more responsive to the inductive properties of rifamycin derivatives than the rat and guinea pig. The rat hepatic cytochrome P450 system seems to be resistant to the action of rifampicin unless very high doses are used. Mouse hepatic microsomal mixed-function oxidase activity is markedly increased by repeated dosing with rifampicin, whereas administration of rifabutin may be ineffective. In humans, both rifampicin and rifabutin are extensively metabolized and induce their own metabolism. The induced metabolic pathways remain essentially unknown. Under autoinduction conditions, the elimination half-life of rifampicin decreases, whereas that of rifabutin is not altered. Although the effects of repeated administration of rifampicin and rifabutin on the various forms of cytochrome P450 in humans have not been extensively examined, there is convincing evidence that the P4503A subfamily is induced by either drug, whereas the P4501A subfamily and P4502D6 do not appear to be affected by rifampicin. Limited reliable information is available concerning the induction of human glucuronyltransferase activities by rifampicin and rifabutin which, however, do not seem to influence zidovudine glucuronide formation in healthy subjects.

摘要

动物研究表明,与大鼠和豚鼠相比,小鼠和兔子对利福霉素衍生物的诱导特性反应更为灵敏。大鼠肝细胞色素P450系统似乎对利福平的作用具有抗性,除非使用非常高的剂量。重复给予利福平可显著提高小鼠肝微粒体混合功能氧化酶的活性,而给予利福布汀可能无效。在人体内,利福平和利福布汀均被广泛代谢并可诱导自身的代谢。诱导的代谢途径基本上仍不清楚。在自身诱导条件下,利福平的消除半衰期缩短,而利福布汀的消除半衰期未改变。尽管尚未对利福平和利福布汀在人体内重复给药对各种形式细胞色素P450的影响进行广泛研究,但有确凿证据表明,这两种药物均可诱导P4503A亚家族,而P4501A亚家族和P4502D6似乎不受利福平影响。关于利福平和利福布汀对人葡糖醛酸转移酶活性的诱导作用,可获得的可靠信息有限,不过这两种药物似乎并不影响健康受试者体内齐多夫定葡糖醛酸的形成。

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