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Influence of glucose concentration on the structure and quantity of biofilms formed by Candida parapsilosis

机译:葡萄糖浓度对副念珠菌形成的生物膜的结构和数量的影响

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Candida parapsilosis is nowadays an emerging opportunistic pathogen and its increasing incidence is part related to the capacity to produce biofilm. In addition, one of the most important C. parapsilosis pathogenic risk factors includes the organisms' selective growth capabilities in hyperalimentation solutions. Thus, in this study, we investigated the role of glucose in C. parapsilosis biofilm modulation, by studying biofilm formation, matrix composition, and structure. Moreover, the expression of biofilm-related genes (BCR1, FKS1 and OLE1) was analysed in the presence of different glucose percentages. The results demonstrated the importance of glucose in the modulation of C. parapsilosis biofilm. The concentration of glucose had direct implications on the C. parapsilosis transition of yeast cells to pseudohyphae. Additionally, it was demonstrated that biofilm-related genes BCR1, FKS1, and OLE1 are involved in biofilm modulation as a result of glucose. The mechanism by which glucose enhances biofilm formation is not fully understood; however, with this study we were able to demonstrate that C. parapsilosis responds to stress conditions caused by elevated levels of glucose by upregulating genes related to biofilm formation (BCR1, FKS1 and OLE1).
机译:如今,副念珠菌是一种新兴的机会病原体,其发病率上升与生产生物膜的能力有关。此外,最重要的副寄生虫病原致病因素之一包括微生物在高营养溶液中的选择性生长能力。因此,在这项研究中,我们通过研究生物膜的形成,基质组成和结构,研究了葡萄糖在副寄生虫生物膜调节中的作用。此外,在存在不同葡萄糖百分比的情况下分析了生物膜相关基因(BCR1,FKS1和OLE1)的表达。结果证明了葡萄糖在调节副寄生念珠菌生物膜中的重要性。葡萄糖的浓度对酵母细胞向假菌丝的副枝梭菌转化有直接影响。此外,已证明生物膜相关基因BCR1,FKS1和OLE1由于葡萄糖而参与生物膜调节。葡萄糖增强生物膜形成的机理尚不完全清楚。然而,通过这项研究,我们能够证明副寄生梭菌通过上调与生物膜形成相关的基因(BCR1,FKS1和OLE1)来应对葡萄糖水平升高引起的应激条件。

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