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Rapid Depletion of Dissolved Oxygen in 96-Well Microtiter Plate Staphylococcus epidermidis Biofilm Assays Promotes Biofilm Development and Is Influenced by Inoculum Cell Concentration

机译:96孔微量滴定板表皮葡萄球菌生物膜测定中溶解氧的快速耗竭促进了生物膜的发展,并受接种细胞浓度的影响

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摘要

Biofilm-related research using 96-well microtiter plates involves static incubation of plates indiscriminate of environmental conditions, making oxygen availability an important variable which has not been considered to date. By directly measuring dissolved oxygen concentration over time we report here that dissolved oxygen is rapidly consumed in Staphylococcus epidermidis biofilm cultures grown in 96-well plates irrespective of the oxygen concentration in the gaseous environment in which the plates are incubated. These data indicate that depletion of dissolved oxygen during growth of bacterial biofilm cultures in 96-well plates may significantly influence biofilm production. Furthermore higher inoculum cell concentrations are associated with more rapid consumption of dissolved oxygen and higher levels of S. epidermidis biofilm production. Our data reveal that oxygen depletion during bacterial growth in 96-well plates may significantly influence biofilm production and should be considered in the interpretation of experimental data using this biofilm model. Biotechnol. Bioeng. 2009;103: 1042-1047.
机译:使用96孔微量滴定板进行生物膜相关的研究涉及不考虑环境条件而对板进行静态孵育,这使得氧的利用率成为迄今为止尚未考虑的重要变量。通过直接测量随时间变化的溶解氧浓度,我们在此报告,在96孔板中生长的表皮葡萄球菌生物膜培养物中,溶解氧迅速消耗,而与培养板的气态环境中的氧浓度无关。这些数据表明在96孔板中细菌生物膜培养物生长过程中溶解氧的消耗可能会显着影响生物膜的产生。此外,更高的接种细胞浓度与更快地溶解氧消耗和更高水平的表皮葡萄球菌生物膜产生有关。我们的数据表明,在96孔板中细菌生长过程中的耗氧量可能会严重影响生物膜的产生,因此在使用该生物膜模型解释实验数据时应考虑到这一点。生物技术。生恩2009; 103:1042-1047。

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