He Jialin, Gao Xiangyu, Huang Hanbing, Hao Jianxiong
College of Food Science and Biology, Hebei University of Science and Technology, No. 26 Yuxiang Street, Shijiazhuang 050018, China.
Foods. 2023 Mar 23;12(7):1361. doi: 10.3390/foods12071361.
Biofilms are microbial communities that represent a high abundance of microbial life forms on Earth. Within biofilms, structural changes during clearance processes occur in three spatial and temporal dimensions; therefore, microscopy and quantitative image analysis are essential in elucidating their function. Here, we present confocal laser scanning microscopy (CLSM) in conjunction with ISA-2 software analysis for the automated and high-throughput quantification, analysis, and visualisation of biofilm interiors and overall biofilm properties in three spatial and temporal dimensions. This paper discusses the removal process of (LM) biofilms using slightly acidic electrolytic water, non-electrolytic hypochlorite water, and alternating the use of strongly acidic and strongly alkaline electrolytic water. The results show that the biofilm gradually thins and gutters from the initial viscous dense and thick morphology under the action of either biocide. This process is consistent with first-level kinetics. After CLSM filming to observe the biofilm structure, analysis software was used to process and quantify the biovolume, average biofilm thickness, biofilm roughness and other indicators; fluorescence enzyme markers were used to verify the remaining amount of extracellular nucleic acid. In this study, we proposed and validated the theory of layer-by-layer elimination of LM biofilm.
生物膜是微生物群落,代表了地球上大量的微生物生命形式。在生物膜内,清除过程中的结构变化在三个空间和时间维度上发生;因此,显微镜和定量图像分析对于阐明其功能至关重要。在这里,我们展示了共聚焦激光扫描显微镜(CLSM)结合ISA-2软件分析,用于在三个空间和时间维度上对生物膜内部和整体生物膜特性进行自动化和高通量的定量、分析和可视化。本文讨论了使用微酸性电解水、非电解次氯酸盐溶液以及交替使用强酸性和强碱性电解水去除(LM)生物膜的过程。结果表明,在任何一种杀菌剂的作用下,生物膜从最初的粘性致密且厚的形态逐渐变薄并形成沟槽。这个过程符合一级动力学。在CLSM拍摄观察生物膜结构后,使用分析软件处理并量化生物体积、平均生物膜厚度、生物膜粗糙度等指标;使用荧光酶标记物验证细胞外核酸的残留量。在本研究中,我们提出并验证了LM生物膜逐层消除的理论。