Institute of Applied Sciences & Intelligent Systems , National Research Council (CNR-ISASI) , Via Campi Flegrei 34 , 80078 Pozzuoli (NA) , Italy.
Institute of Food Sciences , National Research Council (CNR-ISA) , Via Roma 64 , 83100 Avellino , Italy.
ACS Appl Mater Interfaces. 2018 May 9;10(18):15467-15476. doi: 10.1021/acsami.8b02815. Epub 2018 Apr 27.
Biofilms are detrimental to human life and industrial processes due to potential infections, contaminations, and deterioration. Therefore, the evaluation of microbial capability to form biofilms is of fundamental importance for assessing how different environmental factors may affect their vitality. Nowadays, the approaches used for biofilm evaluation are still poor in reliability and rapidity and often provide contradictory results. Here, we present what we call biofilm electrostatic test (BET) as a simple, rapid, and highly reproducible tool for evaluating in vitro the ability of bacteria to form biofilms through electrostatic interaction with a pyroelectrified carrier. The results show how the BET is able to produce viable biofilms with a density 6-fold higher than that on the control, after just 2 h incubation. The BET could pave the way to a rapid standardization of the evaluation of bacterial resistance among biofilm-producing microorganisms. In fact, due to its simplicity and cost-effectiveness, it is well suited for a rapid and easy implementation in a microbiology laboratory.
生物膜对人类生活和工业过程造成危害,因为它们可能导致感染、污染和恶化。因此,评估微生物形成生物膜的能力对于评估不同环境因素如何影响其活力至关重要。如今,用于生物膜评估的方法在可靠性和快速性方面仍然较差,并且经常提供相互矛盾的结果。在这里,我们提出了所谓的生物膜静电测试(BET),这是一种简单、快速且高度可重复的工具,可通过与热电载体的静电相互作用来评估细菌在体外形成生物膜的能力。结果表明,BET 仅在孵育 2 小时后,就能产生比对照物密度高 6 倍的活菌生物膜。BET 可以为生物膜产生微生物的细菌耐药性评估的快速标准化铺平道路。事实上,由于其简单性和成本效益,它非常适合在微生物实验室中快速简便地实施。