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首页> 外文期刊>Cell biochemistry and biophysics >Study on the Structure of Candida Albicans-Staphylococcus Epidermidis Mixed Species Biofilm on Polyvinyl Chloride Biomaterial
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Study on the Structure of Candida Albicans-Staphylococcus Epidermidis Mixed Species Biofilm on Polyvinyl Chloride Biomaterial

机译:聚氯乙烯生物材料上白色念珠菌-表皮葡萄球菌混合物种生物膜的结构研究

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The objective of the study was to establish an in vitro model of Candida albicans-Staphylococcus epidermidis mixed species biofilm (BF) on polyvinyl chloride (PVC) material, and to investigate the formation and the structure of mixed species BF formation using a combined approach of confocal laser scanning microscope (CLSM), scanning electron microscope (SEM), and 3D image reconstruction technique. Mixed species BF is achieved by co-incubating Staphylococcus epidermidis bacteria (ATCC35984) and Candida albicans fungal (ATCC10231) with PVC pieces in Tris-buffered saline. BF formation was examined at 2, 6, 12, 24, 48, and 72 h of co-culture. Thickness of these BFs and the number, and percentage of viable cells in BFs were measured. CT scan images of BFs were obtained using CLSM and SEM and reconstructed 3D images of mixed species BF were acquired, in an effort to examine structure of the BF. Staphylococcus epidermidis attached to various forms of candida albicans (spores, pseudohyphae, and hyphae), formed complex and dense mesh arrays. The BF is constituted of a large number of viable and dead pathogens, the surface of mixed species BF is uneven, with living pathogens predominating protrusive portions and dead pathogens aggregating in concaves. Mixed species BF formation on the surface of PVC material was found to be a dynamic process, with rapid growth being at 24 h of co-culture, maximal thickness peaked at 48 h. These mixed species BF matured at 48-72 h. Significant differences were observed in the proportion of viable cells between interior, middle, and outer layers of BFs (p < 0.05). Mixed species BF Candida albicans-Staphylococcus epidermidis is sophisticated in structure. The combined approach involving CLSM, SEM, and 3D image reconstruction technique is ideal for the investigation of mixed species BF on PVC material.
机译:本研究的目的是在聚氯乙烯(PVC)材料上建立白色念珠菌-表皮葡萄球菌混合菌种生物膜(BF)的体外模型,并采用混合法研究混合菌种BF的形成和结构。共聚焦激光扫描显微镜(CLSM),扫描电子显微镜(SEM)和3D图像重建技术。通过将表皮葡萄球菌细菌(ATCC35984)和白色念珠菌真菌(ATCC10231)与PVC碎片在Tris缓冲盐水中共同孵育来实现混合物种BF。在共培养2、6、12、24、48和72小时检查BF的形成。测量这些BF的厚度以及BF中活细胞的数量和百分比。使用CLSM和SEM获得了高炉的CT扫描图像,并获取了混合物种高炉的3D重建图像,以检查高炉的结构。表皮葡萄球菌附着于各种形式的白色念珠菌(孢子,假菌丝和菌丝),形成了复杂而密集的网状阵列。高炉由大量活的和死亡的病原体组成,混合物种高炉的表面不平坦,活的病原体占突出部分,死的病原体聚集在凹处。发现在PVC材料表面形成混合物种BF是一个动态过程,共培养24 h迅速生长,最大厚度在48 h达到峰值。这些混合物种BF在48-72小时成熟。高炉内层,中层和外层之间的活细胞比例存在显着差异(p <0.05)。混合物种BF白色念珠菌-表皮葡萄球菌结构复杂。包含CLSM,SEM和3D图像重建技术的组合方法非常适合研究PVC材料上的混合物种高炉。

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