Science and Technology Park for Medicine, via 29 Maggio 6, 41037 Mirandola, Modena, Italy.
Department of Medical and Surgical Sciences for Children & Adults, University Hospital of Modena and Reggio Emilia, via del Pozzo 71, 41124 Modena, Italy.
Int J Environ Res Public Health. 2017 Dec 18;14(12):1587. doi: 10.3390/ijerph14121587.
Biofilms are assemblages of bacterial cells irreversibly associated with a surface where moisture is present. In particular, they retain a relevant impact on public health since through biofilms bacteria are able to survive and populate biomedical devices causing severe nosocomial infections that are generally resistant to antimicrobial agents. Therefore, controlling biofilm formation is a mandatory feature during medical device manufacturing and during their use. In this study, combining a crystal violet staining together with advanced stereomicroscopy, we report an alternative rapid protocol for both qualitative and semi-quantitative biofilm determination having high specificity, high repeatability, and low variability. The suggested approach represents a reliable and versatile method to detect, monitor, and measure biofilm colonization by an easy, more affordable, and reproducible method.
生物膜是细菌细胞不可逆地与存在水分的表面结合的聚集体。特别地,由于生物膜中的细菌能够存活并在生物医学设备中繁殖,导致严重的医院获得性感染,而这些感染通常对抗菌药物具有抗性,因此它们对公共卫生具有重要影响。因此,在医疗器械制造过程中和使用过程中控制生物膜的形成是强制性的。在这项研究中,我们结合结晶紫染色和先进的立体显微镜,报告了一种用于定性和半定量生物膜测定的替代快速方案,该方案具有高特异性、高重复性和低变异性。所提出的方法代表了一种可靠且多功能的方法,可以通过一种简单、更经济实惠且可重复的方法来检测、监测和测量生物膜的定植。