首页> 外文期刊>Frontiers in Microbiology >Adhesion, biofilm formation, cell surface hydrophobicity, and antifungal planktonic susceptibility: relationship among Candida spp.
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Adhesion, biofilm formation, cell surface hydrophobicity, and antifungal planktonic susceptibility: relationship among Candida spp.

机译:粘附力,生物膜形成,细胞表面疏水性和抗真菌浮游生物敏感性: Candida spp之间的关系。

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We have performed the characterization of the adhesion profile, biofilm formation, cell surface hydrophobicity (CSH) and antifungal susceptibility of 184 Candida clinical isolates obtained from different human reservoirs. Adhesion was quantified using a flow cytometric assay and biofilm formation was evaluated using two methodologies: XTT and crystal violet assay. CSH was quantified with the microbial adhesion to hydrocarbons test while planktonic susceptibility was assessed accordingly the CLSI protocol for yeast M27-A3 S4. Yeast cells of non- albicans species exhibit increased ability to adhere and form biofilm. However, the correlation between adhesion and biofilm formation varied according to species and also with the methodology used for biofilm assessment. No association was found between strain's site of isolation or planktonic antifungal susceptibility and adhesion or biofilm formation. Finally CSH seemed to be a good predictor for biofilm formation but not for adhesion. Despite the marked variability registered intra and inter species, C. tropicalis and C. parapsilosis were the species exhibiting high adhesion profile. C. tropicalis , C. guilliermondii , and C. krusei revealed higher biofilm formation values in terms of biomass. C. parapsilosis was the species with lower biofilm metabolic activity.
机译:我们已经对从不同的人体中获得的184种念珠菌临床分离株的粘附特性,生物膜形成,细胞表面疏水性(CSH)和抗真菌敏感性进行了表征。使用流式细胞术测定粘附性,并使用两种方法评估生物膜的形成:XTT和结晶紫测定。 CSH通过微生物对碳氢化合物的粘附力测试进行量化,同时相应地评估了酵母M27-A3 S4的CLSI方案的浮游敏感性。非白色菌种的酵母细胞表现出增加的粘附和形成生物膜的能力。然而,粘附力和生物膜形成之间的相关性根据物种以及用于生物膜评估的方法而变化。在菌株的分离部位或浮游抗真菌药性与粘附或生物膜形成之间未发现关联。最后,CSH似乎可以很好地预测生物膜的形成,但不能预测其粘附性。尽管内部和内部物种之间存在明显的变异性,但热带念珠菌和副寄生念珠菌仍具有较高的附着力。 C.tropicis,C.guilliermondii和C.krusei在生物量方面显示出更高的生物膜形成值。 C. parapsilosis是生物膜代谢活性较低的物种。

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