唑类抗真菌药物对克鲁氏念珠菌细胞色素P450的抑制作用及相互作用。

K Venkateswarlu, D W Denning, S L Kelly
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引用次数: 0

摘要

克鲁氏念珠菌已成为一种越来越重要的侵袭性病原体,特别是在艾滋病患者中,并且对氟康唑具有高度耐药性。体外生长抑制研究表明,氟康唑和酮康唑的抑制作用比伊曲康唑低约800倍和19倍。采用体外麦角甾醇生物合成法和差分光谱法分别研究了伊曲康唑、氟康唑和酮康唑对克鲁西麦角甾醇14 α -去甲基化酶的抑制作用和相互作用。与氟康唑相比,伊曲康唑和酮康唑在较低浓度下抑制麦角甾醇的体外生物合成。这三种药物都与微粒体P450相互作用,并干扰一氧化碳与P450的结合,其抑制作用与无细胞提取物中麦角甾醇的生物合成成正比。与伊曲康唑和酮康唑相比,甾醇14 α -去甲基酶对氟康唑的亲和力略低,这只是氟康唑对克鲁塞菌活性较差的部分原因。
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Inhibition and interaction of cytochrome P450 of Candida krusei with azole antifungal drugs.

Candida krusei has become an increasingly important invasive pathogen, particularly in AIDS patients and is highly resistant to fluconazole. In vitro growth inhibition studies revealed that fluconazole and ketoconazole were approximately 800- and 19-fold less inhibitory than itraconazole. The inhibition and interaction of itraconazole, fluconazole and ketoconazole with the sterol 14 alpha-demethylase of C. krusei was studied using in vitro ergosterol biosynthesis and difference spectroscopy, respectively. Both itraconazole and ketoconazole inhibited in vitro ergosterol biosynthesis at lower concentrations than fluconazole. All three drugs interacted with microsomal P450 and interfered in the binding of carbon monoxide to P450 in direct proportion to their inhibitory effect on ergosterol biosynthesis in cell-free extracts. The slightly lower affinity of sterol 14 alpha-demethylase for fluconazole compared with itraconazole and ketoconazole is only partially responsible for poor activity of fluconazole on C. krusei.

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