不同体外培养模式下细菌生物膜形成的分析

Agnieszka Bogut, A. Magryś
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引用次数: 1

摘要

介绍。微滴板法(MPA)是体外生物膜研究的主要方法之一,但需要对实验条件进行优化,以满足不同病原菌对生物膜形成的要求。的目标。目的是确定TSB和RPMI1640培养基和选定的培养变量(O2 vs. 5% CO2,延长培养时间)对粪肠球菌(EF)、大肠埃希菌(EC)、金黄色葡萄球菌(SA)、铜绿假单胞菌(PA)、肺炎克雷伯菌(KP)等生物膜相关感染细菌产生生物膜的影响。材料和方法。用结晶紫的MPA进行了研究。结果。EF (TSBo2、RPMIo2、RPMIco2)、EC (TSBo2)、SA (TSBo2、TSBco2)、KP (TSBo2、TSBco2)、PA (RPMIco2、TSBco2)的生物膜产量在24h ~ 72h时间点间均有显著升高(p<0.05)。与RPM1640相比,TSB对生物膜产生的刺激明显更大。无论在大气条件下SA和KP,在好氧条件下EF,它都优于RPMI1640。结论。虽然TSB为生物膜的生产提供了最优的条件,但该过程受菌株类型、大气条件和培养时间的影响,限制了设计单一通用的体外生物膜研究模型的能力。
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Analysis of the bacterial biofilm formation in different models of the in vitro culture
Introduction. Microtiter plate assay (MPA) remains one of workhorses of in vitro biofilm research but it requires optimization of experimental conditions to fulfill the biofilm formation requirements of different bacterial pathogens. Aim. The aim was to determine the effect of TSB and RPMI1640 culture media and selected culture variables (O2 vs. 5% CO2, extended incubation time) on the biofilm production by bacteria commonly involved in biofilm-related infections: Enterococcus faecalis (EF), Escherichia coli (EC), Staphylococcus aureus (SA), Pseudomonas aeruginosa (PA), Klebsiella pneumoniae (KP). Material and methods. The investigation was performed using the MPA with crystal violet. Results. Statistically significant (p<0.05) increase in biofilm production between 24h and 72h time points was observed for EF (TSB o2, RPMIo2 and RPMIco2), EC (TSBo2), SA (TSBo2, TSBco2), KP (TSBo2, TSBco2), PA (RPMIco2, TSBco2). The TSB caused a significantly greater stimulation of biofilm production compared to RPM1640. It outcompeted RPMI1640 irrespective of the atmospheric conditions for SA and KP and under aerobic conditions for EF. Conclusion. Although the TSB provided the most optimal conditions for biofilm production, the process was influenced by the strain type, atmospheric conditions and period of cultivation which limits the ability to design a single universal model of the in vitro biofilm investigation.
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