Huang Shan, Cao Ying Ying, Dai Bao Di, Sun Xuan Rong, Zhu Zhen Yu, Cao Yong Bing, Wang Yan, Gao Ping Hui, Jiang Yuan Ying
School of Pharmacy, Second Military Medical University, Shanghai 200433, PR China.
Biol Pharm Bull. 2008 Dec;31(12):2234-6. doi: 10.1248/bpb.31.2234.
In vitro interaction of fluconazole and baicalein (BE) was investigated against 30 fluconazole-resistant clinical isolates of Candida albicans. Synergistic activities were determined using the checkerboard microdilution assay based on the fractional inhibitory concentration indices. Organisms were also tested against the 2 drugs singly and in combination using time-kill methods. Both fluconazole and BE showed weak antifungal activity when tested alone. However, the combination of fluconazole and BE showed strong antifungal activity against most of the fluconazole-resistant isolates tested. The findings of time-kill curves confirmed the interaction. Yeast cells grown in the presence of BE exhibited a reduced extrusion of Rhodamine 6G, which indicates the inhibition of efflux pumps by BE. This novel synergism of fluconazole and BE that can overcome drug-resistance in yeast may prove useful in combined treatment of fungal infections.
研究了氟康唑与黄芩素(BE)对30株耐氟康唑的白色念珠菌临床分离株的体外相互作用。基于分数抑制浓度指数,采用棋盘微量稀释法测定协同活性。还使用时间杀菌法对这些菌株单独和联合使用这两种药物进行了测试。单独测试时,氟康唑和BE均显示出较弱的抗真菌活性。然而,氟康唑与BE的组合对大多数测试的耐氟康唑分离株显示出较强的抗真菌活性。时间杀菌曲线的结果证实了这种相互作用。在BE存在下生长的酵母细胞罗丹明6G的外排减少,这表明BE对流出泵有抑制作用。氟康唑与BE的这种新型协同作用可克服酵母中的耐药性,可能在真菌感染的联合治疗中有用。