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首页> 外文期刊>Biofouling >Antifungal effects of the flavonoids kaempferol and quercetin: a possible alternative for the control of fungal biofilms
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Antifungal effects of the flavonoids kaempferol and quercetin: a possible alternative for the control of fungal biofilms

机译:黄酮类磷哌啉和槲皮素的抗真菌效应:对真菌生物膜控制的可能替代方案

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摘要

This study aimed to determine the minimum inhibitory concentration (MIC) of kaempferol and quercetin against planktonic and biofilm forms of the Candida parapsilosis complex. Initially, nine C. parapsilosis sensu stricto, nine C. orthopsilosis and nine C. metapsilosis strains were used. Planktonic susceptibility to kaempferol and quercetin was assessed. Growing and mature biofilms were then exposed to the flavonoids at MIC or 10xMIC, respectively, and theywere also analyzed by confocal laser scanning microscopy. The MIC ranges were 32-128 mu g ml(-1) for kaempferol and 0.5-16 mu g ml(-1) for quercetin. Kaempferol and quercetin decreased (P 0.05) the metabolic activity and biomass of growing biofilms of the C. parapsilosis complex. As for mature biofilms, the metabolic effects of the flavonoids varied, according to the cryptic species, but kaempferol caused an overall reduction in biofilm biomass. Microscopic analyses showed restructuring of biofilms after flavonoid exposure. These results highlight the potential use of these compounds as sustainable resources for the control of fungal biofilms.
机译:该研究旨在确定坎克尼症和生物膜形式的Kaempferol和槲皮素的最小抑制浓度(MIC),念珠菌和生物膜形式。最初,使用九C.Parapsiliss Sensu严格,使用九C.渗透渗流和九C.Poyapleisis菌株。评估对Kaempferol和槲皮素的浮游敏感性。然后将生长和成熟的生物膜分别暴露于MIC或10×10×10×10×10×10×10×10×10℃的生物膜,并通过共聚焦激光扫描显微镜分析它们。对于槲皮素的Kaempferol和0.5-16μg(-1),麦克风范围为32-128μgmml(-1)。 Kaempferol和槲皮素降低(P <0.05)C.Parapsiliss复合物生长生物膜的代谢活性和生物质。至于成熟的生物膜,根据隐秘物种,黄酮类化合物的代谢效应变化,但Kaempferol导致生物膜生物质的总体减少。微观分析表明,黄酮暴露后生物膜的重组。这些结果突出了这些化合物作为用于控制真菌生物膜的可持续资源的潜在用途。

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