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首页> 外文期刊>FEMS Yeast Research >The combination of minocycline and fluconazole causes synergistic growth inhibition against Candida albicans: an in vitro interaction of antifungal and antibacterial agents
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The combination of minocycline and fluconazole causes synergistic growth inhibition against Candida albicans: an in vitro interaction of antifungal and antibacterial agents

机译:米诺环素和氟康唑的组合导致对白色念珠菌的协同生长抑制:抗真菌剂和抗菌剂的体外相互作用

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摘要

Combination therapy can be used for the treatment of fungal infections, especially for those caused by antifungal-resistant fungi. In the present study, in vitro interactions and mechanisms between fluconazole and minocycline against Candida albicans were evaluated. The nature of the interactions determined by spectrophotometric method in a checkerboard assay was interpreted using nonparametric models of fractional inhibitory concentration index (FICI) and percentages of growth difference (E). In the mechanism study, we evaluated the potential activity of minocycline on fluconazole penetrating the C. albicans biofilm. Furthermore, the effect of fluconazole and minocycline alone and in combination on the cellular calcium balance, as well as on the uptake and efflux of fluconazole were evaluated. It was found that fluconazole can work synergistically with minocycline against fluconazole-resistant C. albicans; the minimum inhibitory concentration of fluconazole decreased from 512 to 2 og mLp# when fluconazole and minocycline were given in combination, with an FICI of 0.035 and 0.064 and high-percentage synergistic interactions of 1250% and 988% for the two resistant strains. The mechanism of action was suggested to be the enhancement of minocycline on fluconazole penetrating biofilm, and inducing the intracellular calcium release, instead of impacting on the uptake and efflux of fluconazole. Our results suggest that the combination of fluconazole and minocycline can reduce the fluconazole resistance of C. albicans in vitro.
机译:组合疗法可用于治疗真菌感染,尤其是那些由抗真菌耐药性真菌引起的感染。在本研究中,评估了氟康唑和美满霉素对白念珠菌的体外相互作用及其机理。使用分数抑制浓度指数(FICI)和生长差异百分比(E)的非参数模型解释了在棋盘测定中通过分光光度法确定的相互作用的性质。在机理研究中,我们评估了米诺环素对氟康唑穿透白色念珠菌生物膜的潜在活性。此外,评估了氟康唑和米诺环素单独或联合使用对细胞钙平衡以及氟康唑吸收和流出的影响。发现氟康唑可以与米诺环素协同作用,抵抗氟康唑的白色念珠菌。氟康唑和米诺环素合用时,氟康唑的最低抑菌浓度从512降低到2 ug mLp#,两种抗性菌株的FICI为0.035和0.064,高百分比协同作用为1250%和988%。有人认为其作用机制是增强美诺环素对氟康唑穿透性生物膜的吸收,并诱导细胞内钙的释放,而不是影响氟康唑的吸收和流出。我们的结果表明,氟康唑和米诺环素的组合可以降低体外对白色念珠菌的氟康唑耐药性。

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