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联苯苄唑和克霉唑。它们的作用方式以及联苯苄唑具有杀菌作用的可能原因。

Bifonazole and clotrimazole. Their mode of action and the possible reason for the fungicidal behaviour of bifonazole.

作者信息

Berg D, Regel E, Harenberg H E, Plempel M

出版信息

Arzneimittelforschung. 1984;34(2):139-46.

PMID:6372801
Abstract

Bifonazole (Bay h 4502, Mycospor) and clotrimazole (Bay b 5097, Canesten) are potent inhibitors of ergosterol synthesis in yeasts and dermatophytes. Inhibition of demethylation of 4,4',14-trimethylsterols is accepted as primary mode of action responsible for their fungistatic efficacy. In Candida albicans, Microsporum canis, Trichophyton mentagrophytes as well as in Epidermophyton floccosum the ergosterol precursor 24-methylendihydrolanosterol accumulates, whereas in Torulopsis glabrata lanosterol accumulation occurs, due to the fact that in this organism side chain alkylation proceeds after demethylation reactions. Bifonazole additionally leads to a generally decreased rate of sterol biosynthesis as compared to clotrimazole, due to a direct inhibition of microsomal HMG-CoA-reductase. The additional fungicidal effects of bifonazole are considered to originate from a sequential action by inhibition of HMG-CoA-reductase and of cytochrome P450.

摘要

联苯苄唑(Bay h 4502,霉克)和克霉唑(Bay b 5097,凯妮汀)是酵母菌和皮肤癣菌中麦角固醇合成的有效抑制剂。4,4',14-三甲基甾醇去甲基化的抑制被认为是其抑菌效力的主要作用方式。在白色念珠菌、犬小孢子菌、须癣毛癣菌以及絮状表皮癣菌中,麦角固醇前体24-亚甲基二氢羊毛甾醇会积累,而在光滑球拟酵母中则会积累羊毛甾醇,这是因为在该生物体中侧链烷基化在去甲基化反应之后进行。与克霉唑相比,联苯苄唑还会导致甾醇生物合成速率普遍降低,这是由于它直接抑制微粒体HMG-CoA还原酶。联苯苄唑的额外杀菌作用被认为源于对HMG-CoA还原酶和细胞色素P450的抑制的顺序作用。

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