The formation of yeast biofilm on food industry equipment can lead to serious hygiene problems and economic losses due to food spoilage and equipment impairment. This study explored the ability of a sub-lethal concentration of the bulb extract of Muscari comosum to modulate adhesion of Candida albicans and subsequent biofilm development by this fungus. The HPLC profile of the ethanolic bulb extract showed phenolic constituents, which were found to undergo Folin-Ciocalteu reagent reduction. Prior to the adhesion tests, it was shown that up to 4000 mg l(-1) of natural extract did not adversely affect fungal growth nor did it act as a carbon energy source for C. albicans. Mathematical models predicted that 4000 mg l(-1) and 700 mg l(-1) of bulb extract would cause more than 98% reduction in fungal coverage on abiotic surfaces, without killing the planktonic cells. When added to C. albicans biofilm, the natural extract was shown to induce the dispersion of sessile cells in a dose-dependent manner.

译文

:由于食品变质和设备损坏,在食品工业设备上形成酵母生物膜会导致严重的卫生问题和经济损失。这项研究探索了亚致死浓度的穆斯卡里鳞茎鳞茎提取物调节这种念珠菌粘附力和随后的生物膜发育的能力。乙醇鳞茎提取物的HPLC图谱显示酚类成分,发现酚类成分经过Folin-Ciocalteu试剂还原。在附着力测试之前,研究表明,高达4000 mg l(-1)的天然提取物不会对真菌的生长产生不利影响,也不会充当白色念珠菌的碳能源。数学模型预测,球茎提取物4000 mg l(-1)和700 mg l(-1)会导致非生物表面真菌覆盖率降低98%以上,而不会杀死浮游生物。当添加到白色念珠菌生物膜中时,天然提取物显示出以剂量依赖的方式诱导无柄细胞的分散。

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