Department of Microbiology, Pusan National University, Pusan 46241, Republic of Korea.
J Microbiol Biotechnol. 2023 Mar 28;33(3):348-355. doi: 10.4014/jmb.2209.09045. Epub 2023 Jan 18.
Epifluorescence microscopy with image analysis was evaluated as a biofilm quantification method (, quantification of surface area colonized by biofilms), in comparison with crystal violet (CV) staining. We performed different experiments to generate multispecies biofilms with natural and artificial bacterial assemblages. First, four species were inoculated daily in 16 different sequences to form biofilms (surface colonization, 0.1%-56.6%). Second, a 9-species assemblage was allowed to form biofilms under 10 acylase treatment episodes (33.8%-55.6%). The two methods comparably measured the quantitative variation in biofilms, exhibiting a strong positive relationship ( ≥ 0.7). Moreover, the two methods exhibited similar levels of variation coefficients. Finally, six synthetic and two natural consortia were allowed to form biofilms for 14 days, and their temporal dynamics were monitored. The two methods were comparable in quantifying four biofilms colonizing ≥18.7% ( ≥ 0.64), but not for the other biofilms colonizing ≤ 3.7% ( ≤ 0.25). In addition, the two methods exhibited comparable coefficients of variation in the four biofilms. Microscopy and CV staining comparably measured the quantitative variation of biofilms, exhibiting a strongly positive relationship, although microscopy cannot appropriately quantify the biofilms below the threshold colonization. Microscopy with image analysis is a promising approach for easily and rapidly estimating absolute quantity of multispecies biofilms.
荧光显微镜结合图像分析被评估为一种生物膜定量方法(用于定量生物膜所占据的表面积),并与结晶紫(CV)染色法进行了比较。我们进行了不同的实验,以生成具有天然和人工细菌组合的多物种生物膜。首先,每天在 16 种不同的序列中接种四种细菌以形成生物膜(表面定植率为 0.1%-56.6%)。其次,允许一个 9 种细菌的组合在 10 次酶解处理事件下形成生物膜(33.8%-55.6%)。这两种方法都能很好地测量生物膜的定量变化,表现出很强的正相关关系(≥0.7)。此外,这两种方法的变异系数水平相似。最后,让六个合成和两个天然联合体形成生物膜 14 天,并监测其时间动态。这两种方法在定量测量定植率≥18.7%(≥0.64)的四个生物膜方面相当,但对于定植率≤3.7%(≤0.25)的其他生物膜则不然。此外,这两种方法在四个生物膜中的变异系数水平相当。荧光显微镜结合图像分析能够很好地测量生物膜的定量变化,表现出很强的正相关关系,尽管显微镜不能适当地定量测量低于阈值定植的生物膜。荧光显微镜结合图像分析是一种很有前途的方法,可以方便、快速地估计多物种生物膜的绝对数量。