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Synergistic effect of doxycycline and fluconazole against Candida albicans biofilms and the impact of calcium channel blockers

机译:强力霉素和氟康唑对白色念珠菌生物膜的协同作用和钙通道阻滞剂的影响

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Candida albicans is a clinically important fungus and is capable of forming biofilms, which contributes to the emergence of fluconazole resistance. Here, sessile minimum inhibitory concentrations (SMICs) of fluconazole combined with doxycycline against biofilms of C.albicans were determined, and the results of SMICs were compared with minimum inhibitory concentrations (MICs) of planktonic cells. SMICs and MICs were determined by microdilution checkerboard method, and the interactions between two drugs were interpreted by two models of fractional inhibitory concentration index and the percentage of growth difference (oE). For the biofilms formed over 4, 8, and 12h, synergism was displayed by the combination of doxycycline(1-64mgL(-1)) and fluconazole, and the fluconazole SMIC reduced from 64-512mgL(-1) to 1-16mgL(-1) against all the tested isolates. Calcium homeostasis is an important factor in growth of C.albicans. In this study, the impact of calcium channel blocker on the drug combination was observed by plate streaking and determined by liquid methods quantitatively. Obvious enhancement of antifungal effect appeared by combination of three drugs. These results show us that fluconazole combined with doxycycline could be effective against C.albicans biofilm, and the combined antifungal mechanism is associated with calcium.
机译:白色念珠菌是临床上重要的真菌,能够形成生物膜,从而有助于氟康唑耐药性的出现。在这里,确定了氟康唑联合强力霉素对白色念珠菌生物膜的无固定最低抑菌浓度(SMICs),并将其与浮游细胞的最低抑菌浓度(MICs)进行了比较。用微量稀释棋盘法确定中药和中药,并用两种抑制分数浓度指数和生长差异百分比(oE)模型解释两种药物之间的相互作用。对于在4、8和12小时内形成的生物膜,强力霉素(1-64mgL(-1))和氟康唑的组合显示出协同作用,而氟康唑SMIC从64-512mgL(-1)降至1-16mgL( -1)针对所有测试的分离株。钙稳态是白色念珠菌生长的重要因素。在这项研究中,通过平板划线观察了钙通道阻滞剂对药物组合的影响,并通过液体方法进行了定量测定。三种药物合用后,抗真菌作用明显增强。这些结果表明,氟康唑联合强力霉素可有效对抗白色念珠菌生物膜,并且联合的抗真菌机制与钙有关。

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