Department of Pharmacology, School of Medicine, University of California, Genome and Biomedical Sciences Facility, Davis, California 95616, USA.
Med Mycol. 2010 Mar;48(2):255-62. doi: 10.1080/13693780903081968.
Cryptococcus neoformans is the leading cause of fungal meningitis, a life-threatening infection that occurs predominately in immuocompromised patients. Current drug therapies are limited to amphotericin B, flucytosine and the azoles since the echinocandins have no demonstrated activity against yeast like pathogens. Fluconazole, a drug belonging to the azole class and often the only available antifungal in the developing world, is fungistatic and therefore not effective in clearing cryptococcal infections in immunosuppressed individuals. Here we report that astemizole and a closely related analog (A2) promoted in vitro fungicidal activity of fluconazole against Cryptococcus neoformans var. grubii and Cryptococcus gattii. Astemizole, a second-generation antihistamine drug used as an H1 antagonist, has also been found to have antimalarial activity. Disk diffusion assays and MIC and MFC analysis confirmed that the inhibitory concentrations of these drug combinations were fungicidal. When tested in vivo, astemizole or A2 in combination with fluconazole significantly improved the survival of Galleria mellonella (wax moth caterpillar) that had been previously challenged with C. neoformans but not when caterpillars were challenged with a fluconazole-resistant strain. The findings reported here suggest that fungicidal combinations between azoles and other existing drugs may represent an alternative strategy for improving treatments for fungal infections.
新型隐球菌是真菌性脑膜炎的主要病因,这种危及生命的感染主要发生在免疫功能低下的患者中。目前的药物治疗仅限于两性霉素 B、氟胞嘧啶和唑类药物,因为棘白菌素类药物对酵母样病原体没有显示出活性。氟康唑是一种属于唑类的药物,通常是发展中国家唯一可用的抗真菌药物,它具有抑菌作用,因此在免疫抑制个体中不能有效清除隐球菌感染。在这里,我们报告了阿司咪唑和一种密切相关的类似物 (A2) 可增强氟康唑对新型隐球菌 var. grubii 和隐球菌 gattii 的体外杀菌活性。阿司咪唑是一种用作 H1 拮抗剂的第二代抗组胺药物,也被发现具有抗疟活性。圆盘扩散试验和 MIC 和 MFC 分析证实,这些药物组合的抑制浓度具有杀菌作用。当在体内进行测试时,阿司咪唑或 A2 与氟康唑联合使用可显著提高已被新型隐球菌感染的家蚕(蜡蛾幼虫)的存活率,但当幼虫被氟康唑耐药株感染时则没有效果。这里报告的研究结果表明,唑类药物与其他现有药物之间的杀菌组合可能代表改善真菌感染治疗的一种替代策略。