Meletiadis Joseph, te Dorsthorst Debbie T A, Verweij Paul E
National Cancer Institute, Pediatric Oncology Branch, Bethesda, MD 20892, USA.
Int J Antimicrob Agents. 2006 Nov;28(5):439-49. doi: 10.1016/j.ijantimicag.2006.07.011. Epub 2006 Oct 19.
The interaction between polyenes and azoles is not well understood. We therefore explored the in vitro combination of amphotericin B with itraconazole against 14 clinical Aspergillus fumigatus isolates (9 itraconazole susceptible and 5 itraconazole resistant) with a colorimetric broth microdilution checkerboard technique using two drug interaction models able to explore complicated patterns of interactions: the response surface analysis of Bliss independence and the isobolographic analysis of Loewe additivity zero interaction theories. Synergy was found at combinations with low concentrations of amphotericin B (<0.125 mg/L), whereas antagonism was found at combinations with higher concentrations of amphotericin B. For itraconazole-resistant isolates, synergistic interactions were observed at high concentrations of itraconazole (>0.5 mg/L). Synergy was more frequently observed for the itraconazole-resistant isolates than for the itraconazole-susceptible isolates.
多烯类药物与唑类药物之间的相互作用尚未完全明确。因此,我们采用比色肉汤微量稀释棋盘法,运用两种能够探究复杂相互作用模式的药物相互作用模型,即布利斯独立性反应面分析和洛伊相加性零相互作用理论的等效应线分析,研究了两性霉素B与伊曲康唑对14株临床烟曲霉分离株(9株对伊曲康唑敏感,5株对伊曲康唑耐药)的体外联合作用。在低浓度两性霉素B(<0.125mg/L)组合中发现协同作用,而在高浓度两性霉素B组合中发现拮抗作用。对于伊曲康唑耐药菌株,在高浓度伊曲康唑(>0.5mg/L)时观察到协同相互作用。与伊曲康唑敏感菌株相比,伊曲康唑耐药菌株更常出现协同作用。