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首页> 外文期刊>Medical mycology: official publication of the International Society for Human and Animal Mycology >Candida albicans adhesion to human epithelial cells and polystyrene and formation of biofilm is reduced by sub-inhibitory Melaleuca alternifolia (tea tree) essential oil.
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Candida albicans adhesion to human epithelial cells and polystyrene and formation of biofilm is reduced by sub-inhibitory Melaleuca alternifolia (tea tree) essential oil.

机译:通过亚抑制的Melaleuca allyifolia(茶树)精油,念珠菌与人上皮细胞和聚苯乙烯的粘附和聚苯乙烯形成和生物膜的形成。

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摘要

This study investigated the effects of the volatile terpene-rich oil from Melaleuca alternifolia (tea tree oil) on the formation of biofilms and the adhesion of C. albicans cells to both biotic and abiotic surfaces. Biofilm formation on polystyrene was significantly inhibited for 70% of the isolates at the lowest test concentration of 0.016% of tea tree oil (TTO) when quantified by XTT and 40% of isolates when measured by crystal violet staining. Adhesion to polystyrene, quantified by crystal violet staining, was significantly reduced for 3 isolates at 0.031%, 6 isolates at 0.062% and 0.125% and for all 7 isolates at 0.25% TTO. Reductions in adhesion were not due to loss of viability (at concentrations of ≤ 0.125%) or interactions between the TTO and polystyrene. Similarly, adhesion to buccal epithelial and HeLa cells was also significantly reduced in the presence of 0.016-0.062% TTO. Treatment with 0.125% TTO, but not 0.062%, decreased the cell surface hydrophobicity of C. albicans, indicating one potential mechanism by which adhesion may be reduced. These data demonstrate that sub-inhibitory TTO reduces the adhesion of C. albicans to both human cells and polystyrene, inhibits biofilm formation and decreases cell surface hydrophobicity.
机译:本研究调查了富含挥发性脂肪油来自Melaleuca allowidolia(茶树油)的影响,对生物膜的形成和C. albicans细胞对生物和非生物表面的粘附性。当通过晶紫色染色测量时,在0.016%的茶树油(TTO)的最低测试浓度下,聚苯乙烯的Biofilm形成显着抑制了70%的分离物。通过晶体紫色染色量化的聚苯乙烯的粘附性显着降低3个分离物,0.031%,6分离物为0.062%和0.125%,并且所有7个分离物为0.25%TTO。粘附的减少不是由于活力损失(以≤0.125%)或TTO和聚苯乙烯之间的相互作用。类似地,在0.016-0.062%TTO的存在下也显着降低了对口腔上皮和HeLa细胞的粘附性。用0.125%的TTO处理,但不是0.062%,降低了C.古木儿的细胞表面疏水性,表明可以减少粘合的一种潜在机制。这些数据表明,副抑制TTO降低了对人细胞和聚苯乙烯的C.古典文人的粘附性,抑制生物膜形成并降低细胞表面疏水性。

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