van der Mei Henny C, Buijssen Kevin J D A, van der Laan Bernard F A M, Ovchinnikova Ekatarina, Geertsema-Doornbusch Gésinda I, Atema-Smit Jelly, van de Belt-Gritter Betsy, Busscher Henk J
University of Groningen and University Medical Center Groningen, Department of Biomedical Engineering, Groningen, the Netherlands.
University of Groningen and University Medical Center Groningen, Department of Otorhinolaryngology and Head and Neck Surgery, Groningen, the Netherlands.
PLoS One. 2014 Aug 11;9(8):e104508. doi: 10.1371/journal.pone.0104508. eCollection 2014.
Morphogenic conversion of Candida from a yeast to hyphal morphology plays a pivotal role in the pathogenicity of Candida species. Both Candida albicans and Candida tropicalis, in combination with a variety of different bacterial strains and species, appear in biofilms on silicone-rubber voice prostheses used in laryngectomized patients. Here we study biofilm formation on silicone-rubber by C. albicans or C. tropicalis in combination with different commensal bacterial strains and lactobacillus strains. In addition, hyphal formation in C. albicans and C. tropicalis, as stimulated by Rothia dentocariosa and lactobacilli was evaluated, as clinical studies outlined that these bacterial strains have opposite results on the clinical life-time of silicone-rubber voice prostheses. Biofilms were grown during eight days in a silicone-rubber tube, while passing the biofilms through episodes of nutritional feast and famine. Biofilms consisting of combinations of C. albicans and a bacterial strain comprised significantly less viable organisms than combinations comprising C. tropicalis. High percentages of Candida were found in biofilms grown in combination with lactobacilli. Interestingly, L. casei, with demonstrated favorable effects on the clinical life-time of voice prostheses, reduced the percentage hyphal formation in Candida biofilms as compared with Candida biofilms grown in absence of bacteria or grown in combination with R. dentocariosa, a bacterial strain whose presence is associated with short clinical life-times of voice prostheses.
念珠菌从酵母形态向菌丝形态的形态发生转变在念珠菌属的致病性中起关键作用。白色念珠菌和热带念珠菌与多种不同的细菌菌株和菌种一起,出现在喉切除患者使用的硅橡胶语音假体上的生物膜中。在这里,我们研究白色念珠菌或热带念珠菌与不同的共生细菌菌株和乳酸菌菌株组合在硅橡胶上形成生物膜的情况。此外,评估了龋齿罗氏菌和乳酸菌刺激下白色念珠菌和热带念珠菌中的菌丝形成情况,因为临床研究表明这些细菌菌株对硅橡胶语音假体的临床使用寿命有相反的影响。生物膜在硅橡胶管中培养八天,期间生物膜经历营养丰富和匮乏的阶段。由白色念珠菌和一种细菌菌株组合形成的生物膜中的活菌数量明显少于由热带念珠菌组成的组合。在与乳酸菌组合培养的生物膜中发现了高比例的念珠菌。有趣的是,对语音假体临床使用寿命有良好影响的干酪乳杆菌,与在无细菌或与龋齿罗氏菌(一种其存在与语音假体临床使用寿命短相关的细菌菌株)组合培养的念珠菌生物膜相比,降低了念珠菌生物膜中菌丝形成的百分比。