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In Vitro effects of Plantago major extract, aucubin and baicalein on Candida albicans biofilm formation, metabolic activity and cell surface hydrophobicity

机译:车前草主要提取物,aucubin和黄ical素对白色念珠菌生物膜形成,代谢活性和细胞表面疏水性的体外影响

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摘要

PurposeTo determine the in vitro effectiveness of Plantago major extract, along with two of its active components, aucubin and baicalein, on the inhibition of Candida albicans growth, biofilm formation, metabolic activity, and cell surface hydrophobicity.Materials and MethodsTwofold dilutions of P. major, aucubin, and baicalein were used to determine the minimum inhibitory concentration (MIC), minimum fungicidal concentration (MFC), and the minimum biofilm inhibitory concentration (MBIC) of each solution. Separately, twofold dilutions of P. major, aucubin, and baicalein were used to determine the metabolic activity of established C. albicans biofilm using a 2,3-bis (2- methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-carboxanilide reduction assay. Twofold dilutions of P. major, aucubin, and baicalein were used to determine the cell surface hydrophobicity of treated C. albicans biofilm by a two-phase assay using hexadecane. The hydrophobicity percentage of the cell surface was then calculated. A mixed-model ANOVA test was used for intergroup comparisons.ResultsThe MICs of P. major extract (diluted 1:2 to 1:8), aucubin (61 to 244 μg/ml), and baicalein (0.0063 to 100 μg/ml) on the total growth of C. albicans were noticeable at their highest concentrations, and the inhibition was dose dependent. The MFC was evaluated after 48 hours of incubation, and aucubin (244 μg/ml) exhibited a strong fungicidal activity at its highest concentration against C. albicans growth. The MBIC indicated no growth or reduced growth of C. albicans biofilm at the highest concentrations of aucubin (61 to 244 μg/ml) and baicalein (25 to 100 μg/ml). Similarly, the effects of these reagents on C. albicans biofilm metabolic activity and hydrophobicity demonstrated high effectiveness at their highest concentrations.ConclusionP. major extract, aucubin, and baicalein caused a dose-dependent reduction on the total growth, biofilm formation, metabolic activity, and cell surface hydrophobicity of C. albicans. This demonstrates their effectiveness as antifungals and suggests their promising potential use as solutions for C. albicans biofilm-related infections.
机译:目的测定车前草提取物及其两种活性成分aucubin和黄ical素对抑制白色念珠菌生长,生物膜形成,代谢活性和细胞表面疏水性的体外效果。材料和方法,aucubin和黄ical素用于确定每种溶液的最小抑制浓度(MIC),最小杀真菌浓度(MFC)和最小生物膜抑制浓度(MBIC)。分别使用P.major,aucubin和黄-5-素的两倍稀释液使用2,3-双(2-甲氧基-4-硝基-5-硝基苯基)-2H-四唑鎓测定已建立的白色念珠菌生物膜的代谢活性-甲酰苯胺还原试验。通过使用十六烷的两相测定法,对P. major,aucubin和黄ical素进行了两次稀释,以确定处理过的白色念珠菌生物膜的细胞表面疏水性。然后计算细胞表面的疏水性百分比。组间比较使用混合模型ANOVA测试。结果大青叶提取物(1:2至1:8稀释),aucubin(61至244μg/ ml)和黄ical素(0.0063至100μg/ ml)的MICs在最高浓度下,白色念珠菌的总生长量是显着的,并且抑制作用是剂量依赖性的。孵育48小时后评估MFC,而aucubin(244μg/ ml)在最高浓度下对白色念珠菌生长表现出很强的杀菌活性。 MBIC表明在高浓度的蜂胶(61至244μg/ ml)和黄ical素(25至100μg/ ml)下,白色念珠菌生物膜没有生长或生长减少。同样,这些试剂对白色念珠菌生物膜代谢活性和疏水性的影响在其最高浓度下也显示出很高的效力。主要提取物,aucubin和黄ical素对白念珠菌的总生长,生物膜形成,代谢活性和细胞表面疏水性造成剂量依赖性降低。这证明了它们作为抗真菌剂的有效性,并暗示了它们有望用作解决白色念珠菌生物膜相关感染的解决方案。

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