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Biofilm Localization in the Vertical Wall of Shaking 96-Well Plates

机译:晃动96孔板垂直壁中的生物膜定位

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摘要

Microtiter plates with 96 wells are being increasingly used for biofilm studies due to their high throughput, low cost, easy handling, and easy application of several analytical methods to evaluate different biofilm parameters. These methods provide bulk information about the biofilm formed in each well but lack in detail, namely, regarding the spatial location of the biofilms. This location can be obtained by microscopy observation using optical and electron microscopes, but these techniques have lower throughput and higher cost and are subjected to equipment availability. This work describes a differential crystal violet (CV) staining method that enabled the determination of the spatial location of Escherichia coli biofilms formed in the vertical wall of shaking 96-well plates. It was shown that the biofilms were unevenly distributed on the wall with denser cell accumulation near the air-liquid interface. The results were corroborated by scanning electron microscopy and a correlation was found between biofilm accumulation and the wall shear strain rates determined by computational fluid dynamics. The developed method is quicker and less expensive and has a higher throughput than the existing methods available for spatial location of biofilms in microtiter plates.
机译:具有96孔的微量滴定板由于其高通量,低成本,易于操作以及易于应用多种分析方法来评估不同的生物膜参数而越来越多地用于生物膜研究。这些方法提供有关在每个孔中形成的生物膜的大量信息,但缺乏详细信息,即有关生物膜的空间位置。该位置可以通过使用光学和电子显微镜的显微镜观察获得,但是这些技术具有较低的通量和较高的成本,并且受到设备可用性的影响。这项工作描述了一种微分结晶紫(CV)染色方法,该方法能够确定在摇动96孔板的垂直壁上形成的大肠杆菌生物膜的空间位置。结果表明,生物膜在壁上分布不均匀,在气液界面附近细胞聚集更密集。通过扫描电子显微镜证实了该结果,并且发现了生物膜积累与通过计算流体动力学确定的壁剪切应变率之间的相关性。与可用于微量滴定板中生物膜的空间定位的现有方法相比,所开发的方法更快,更便宜,并且具有更高的通量。

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