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Inhibition of planktonic and biofilm growth of Candida albicans reveals novel antifungal activity of caffeine

机译:抑制白色念珠菌的浮游生物膜和生物膜的生长揭示了咖啡因的新型抗真菌活性

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摘要

Infections associated with drug resistant strains and biofilms ofCandida albicanshave necessitated search for novel molecules with antifungal properties. Caffeine, a major component of the most widely consumed beverages, coffee and tea, is known to possess various biological properties. To evaluate antifungal potential, its effect on growth and virulence attributes ofC. albicanswas studied using standard methodologies. Caffeine showed fungistatic effect on planktonic growth of two strains ofC. albicans(including a fluconazole resistant strain), exhibiting minimum inhibitory concentration (MIC) at 12.5 mM concentration. Around 30% decrease in the adhesion of cells in the presence of caffeine indicated considerable anti-adhesion activity. Caffeine prevented formation of biofilms (which are drug resistant forms), in a concentration dependent manner. Analysis by2,3-bis-(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-5-carboxanilide(XTT) metabolic assay and microscopic observations showed inhibition of biofilm development at 25 mM concentration. This study, for the first time demonstrates dietary chemical, caffeine, as a potential inhibitor of growth, adhesion and biofilm formation byC. albicans.
机译:与白色念珠菌的抗药性菌株和生物膜相关的感染必须寻找具有抗真菌特性的新型分子。咖啡因是最广泛消费的饮料,咖啡和茶的主要成分,已知具有多种生物学特性。评估抗真菌潜力,其对C的生长和毒力属性的影响。使用标准方法研究了白化病。咖啡因对两种菌株的浮游生物生长均显示出抑菌作用。白色念珠菌(包括耐氟康唑的菌株)在12.5 mM浓度下表现出最小抑菌浓度(MIC)。在存在咖啡因的情况下,细胞的粘附力下降了约30%,这表明其具有显着的抗粘附活性。咖啡因以浓度依赖的方式阻止了生物膜的形成(它们是耐药性形式)。通过2,3-双-(2-甲氧基-4-硝基-5-磺苯基)-2H-四唑-5-甲酰苯胺(XTT)代谢分析和显微镜观察显示,在25 mM浓度下生物膜的发育受到抑制。这项研究首次证明了膳食化学物质咖啡因是C潜在的生长,粘附和生物膜形成抑制剂。白色的。

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