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双态性在白色念珠菌生物膜形成中的作用。

Role of dimorphism in the development of Candida albicans biofilms.

作者信息

Baillie George S, Douglas L Julia

出版信息

J Med Microbiol. 1999 Jul;48(7):671-679. doi: 10.1099/00222615-48-7-671.

Abstract

Two model biofilm systems, involving growth on disks of catheter material or on cylindrical cellulose filters, were used to investigate the structure of Candida albicans biofilms. To assess the importance of dimorphism in biofilm development, biofilms produced by two wild-type strains were compared with those formed by two morphological mutants, incapable of yeast and hyphal growth, respectively. Scanning electron microscopy and thin sections of biofilms examined by light microscopy revealed that biofilms of the wild-type strains formed on catheter disks consisted of two distinct layers: a thin, basal yeast layer and a thicker, but more open, hyphal layer. The hypha- mutant produced only the basal layer, whereas the yeast- mutant formed a thicker, hyphal biofilm equivalent to the outer zone of the wild-type structures. Biofilms of the yeast- mutant were more easily detached from the catheter surface than the others, suggesting that the basal yeast layer has an important role in anchoring the biofilm to the surface. Biofilms formed on cylindrical cellulose filters were quite different in appearance. The hypha- mutant and both wild types produced exclusively yeast-form biofilms whereas the yeast- mutant generated a dense hyphal mat on the top of the filter. All these biofilms, irrespective of morphological form, were resistant to the antifungal agent, amphotericin B. Overall, these results indicate that the structure of a C. albicans biofilm depends on the nature of the contact surface, but that some surfaces produce biofilms with a layered architecture resembling to that described for bacterial systems.

摘要

使用两种模型生物膜系统,即涉及在导管材料圆盘或圆柱形纤维素滤膜上生长的系统,来研究白色念珠菌生物膜的结构。为了评估二态性在生物膜形成中的重要性,将两种野生型菌株产生的生物膜与分别由两种形态突变体形成的生物膜进行了比较,这两种突变体分别无法进行酵母型和菌丝型生长。扫描电子显微镜以及通过光学显微镜检查的生物膜薄片显示,在导管圆盘上形成的野生型菌株生物膜由两个不同的层组成:一个薄的、基部酵母层和一个较厚但更疏松的菌丝层。菌丝突变体仅产生基部层,而酵母突变体形成了一层与野生型结构外部区域相当的更厚的菌丝生物膜。酵母突变体的生物膜比其他生物膜更容易从导管表面脱落,这表明基部酵母层在将生物膜锚定到表面方面具有重要作用。在圆柱形纤维素滤膜上形成的生物膜在外观上有很大不同。菌丝突变体和两种野生型都仅产生酵母形态的生物膜,而酵母突变体在滤膜顶部形成了一层致密的菌丝垫。所有这些生物膜,无论形态如何,都对抗真菌剂两性霉素B具有抗性。总体而言,这些结果表明白色念珠菌生物膜的结构取决于接触表面的性质,但某些表面产生的生物膜具有类似于细菌系统中所描述的分层结构。

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