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Sanguinarine Inhibits Mono- and Dual-Species Biofilm Formation by Candida albicans and Staphylococcus aureus and Induces Mature Hypha Transition of C. albicans

机译:Sanguinarine抑制白色念珠菌和金黄色葡萄球菌形成单物种和双物种生物膜并诱导白色念珠菌的成熟菌丝过渡。

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摘要

Previous studies have reported that sanguinarine possesses inhibitory activities against several microorganisms, but its effects on mono- and dual-species biofilms of and have not been fully elucidated. In this study, we aimed to evaluate the efficacy of sanguinarine for mono- and dual-species biofilms and explore its ability to induce the hypha-to-yeast transition of . The results showed that the minimum inhibitory concentration (MIC) and minimum biofilm inhibitory concentration (MBIC90) of sanguinarine against and mono-species biofilms was 4, and 2 μg/mL, respectively, while the MIC and MBIC90 of sanguinarine against dual-species biofilms was 8, and 4 μg/mL, respectively. The decrease in the levels of matrix component and tolerance to antibiotics of sanguinarine-treated mono- and dual-species biofilms was revealed by confocal laser scanning microscopy combined with fluorescent dyes, and the gatifloxacin diffusion assay, respectively. Meanwhile, sanguinarine at 128 and 256 μg/mL could efficiently eradicate the preformed 24-h biofilms by mono- and dual-species, respectively. Moreover, sanguinarine at 8 μg/mL could result in the transition of from the mature hypha form to the unicellular yeast form. Hence, this study provides useful information for the development of new agents to combat mono- and dual-species biofilm-associated infections, caused by and .
机译:先前的研究报告说,血红素碱对几种微生物具有抑制活性,但其对单菌种和双菌种生物膜的影响尚未完全阐明。在这项研究中,我们旨在评估sanguinarine对单物种和双物种生物膜的功效,并探讨其诱导菌丝从菌丝向酵母菌转变的能力。结果表明,血红素对单物种和单物种生物膜的最小抑菌浓度(MIC)和最小生物膜抑制浓度(MBIC90)分别为4和2μg/ mL,而血红素对双物种生物膜的最小抑菌浓度(MIC)和MBIC90分别为8和4μg/ mL。共聚焦激光扫描显微镜结合荧光染料和加替沙星扩散分析分别揭示了经血红素碱处理的单物种和双物种生物膜的基质成分水平和对抗生素的耐受性降低。同时,浓度为128和256μg/ mL的血红碱可分别通过单物种和双物种根除预先形成的24小时生物膜。此外,浓度为8μg/ mL的血红素碱可导致从成熟的菌丝形式向单细胞酵母形式的转变。因此,本研究为开发新的药物以对抗由和引起的单物种和双物种生物膜相关感染提供了有用的信息。

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