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首页> 外文期刊>Mycoses: Diagnosis, therapy and prophylaxis of fungal diseases >Enhancement of secretory aspartyl protease production in biofilms of Candida albicans exposed to sub-inhibitory concentrations of fluconazole.
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Enhancement of secretory aspartyl protease production in biofilms of Candida albicans exposed to sub-inhibitory concentrations of fluconazole.

机译:暴露于亚抑菌浓度的氟康唑的白色念珠菌生物膜中分泌性天冬氨酰蛋白酶生产的增强。

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摘要

The production of Secretory Aspartyl Proteases (Sap) is an important virulence factor of Candida albicans. Many studies have shown that a challenge with sub-inhibitory concentrations of antifungals lead species of Candida to the secretion of higher concentrations of Sap. Nevertheless, published studies only reported the secretion of such enzymes by cells growing in planktonic phase, with few mention of biofilms. The present study evaluated the alterations in the secretion of Sap by C. albicans grown in biofilms and exposed to sub-inhibitory concentrations of fluconazole. The MICs for fluconazole of seven clinical strains were determined for planktonic cells. Biofilm and planktonic cells were grown in the presence of (1/2) MIC, (1/4) MIC, and no medication (control). The relative metabolic activity, indirectly related to cell loads, were estimated by the absorbance of reduced XTT and the Sap activity was evaluated by bovine albumin test. It was observed that 72 h-old biofilms under the influence of (1/2) MIC had fewer cells than (1/4) MIC and control. The production of Sap was inversely proportional to the cell content, with higher secretion in (1/2) MIC, followed by (1/4) MIC and control. Biofilms of C. albicans challenged by sub-MICs of fluconazole tend to secrete higher quantities of Sap.
机译:分泌天冬氨酰蛋白酶(Sap)的产生是白色念珠菌的重要毒力因子。许多研究表明,亚抑制浓度的抗真菌药物引起的挑战导致念珠菌物种分泌了更高浓度的汁液。然而,已发表的研究仅报道浮游期生长的细胞分泌这种酶,很少提及生物膜。本研究评估了在生物膜中生长并暴露于氟康唑的亚抑制浓度的白色念珠菌对汁液分泌的改变。确定了七个临床菌株中氟康唑的MIC,以测定浮游细胞。生物膜和浮游细胞在(1/2)MIC,(1/4)MIC存在且没有药物治疗的情况下生长(对照)。通过减少的XTT的吸光度估计与细胞负荷间接相关的相对代谢活性,并通过牛白蛋白测试评估Sap活性。观察到在(1/2)MIC的影响下72小时的生物膜具有比(1/4)MIC和对照少的细胞。 Sap的产生与细胞含量成反比,其中(1/2)MIC分泌更高,其次是(1/4)MIC和对照。受氟康唑亚MIC攻击的白色念珠菌生物膜倾向于分泌更多量的汁液。

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