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Flow Chamber System for the Statistical Evaluation of Bacterial Colonization on Materials

机译:用于材料细菌定殖统计评估的流动室系统

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摘要

Biofilm formation on materials leads to high costs in industrial processes, as well as in medical applications. This fact has stimulated interest in the development of new materials with improved surfaces to reduce bacterial colonization. Standardized tests relying on statistical evidence are indispensable to evaluate the quality and safety of these new materials. We describe here a flow chamber system for biofilm cultivation under controlled conditions with a total capacity for testing up to 32 samples in parallel. In order to quantify the surface colonization, bacterial cells were DAPI (4`,6-diamidino-2-phenylindole)-stained and examined with epifluorescence microscopy. More than 100 images of each sample were automatically taken and the surface coverage was estimated using the free open source software g’mic, followed by a precise statistical evaluation. Overview images of all gathered pictures were generated to dissect the colonization characteristics of the selected model organism Escherichia coli W3310 on different materials (glass and implant steel). With our approach, differences in bacterial colonization on different materials can be quantified in a statistically validated manner. This reliable test procedure will support the design of improved materials for medical, industrial, and environmental (subaquatic or subaerial) applications.
机译:在材料上形成生物膜会导致工业过程以及医疗应用的高成本。这一事实激发了人们对开发具有改善的表面以减少细菌定殖的新材料的兴趣。依靠统计证据进行标准化测试对于评估这些新材料的质量和安全性是必不可少的。我们在这里描述了一种在受控条件下用于生物膜培养的流室系统,其总容量可同时测试多达32个样品。为了量化表面定殖,将细菌细胞用DAPI(4′,6-二ino基-2-苯基吲哚)染色并用落射荧光显微镜检查。自动获取每个样品的100张图像,并使用免费的开源软件g’mic估算表面覆盖率,然后进行精确的统计评估。生成所有收集图片的概述图像,以剖析所选模型生物大肠杆菌W3310在不同材料(玻璃和植入钢)上的定殖特性。使用我们的方法,可以以统计学上有效的方式量化不同材料上细菌定植的差异。这种可靠的测试程序将支持设计用于医学,工业和环境(水生或地下)应用的改良材料。

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