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使用C-SNARF-4对细菌生物膜中的细胞外pH进行比率成像。

Ratiometric imaging of extracellular pH in bacterial biofilms with C-SNARF-4.

作者信息

Schlafer Sebastian, Garcia Javier E, Greve Matilde, Raarup Merete K, Nyvad Bente, Dige Irene

出版信息

Appl Environ Microbiol. 2015 Feb;81(4):1267-73. doi: 10.1128/AEM.02831-14.

Abstract

pH in the extracellular matrix of bacterial biofilms is of central importance for microbial metabolism. Biofilms possess a complex three-dimensional architecture characterized by chemically different microenvironments in close proximity. For decades, pH measurements in biofilms have been limited to monitoring bulk pH with electrodes. Although pH microelectrodes with a better spatial resolution have been developed, they do not permit the monitoring of horizontal pH gradients in biofilms in real time. Quantitative fluorescence microscopy can overcome these problems, but none of the hitherto employed methods differentiated accurately between extracellular and intracellular microbial pH and visualized extracellular pH in all areas of the biofilms. Here, we developed a method to reliably monitor extracellular biofilm pH microscopically with the ratiometric pH-sensitive dye C-SNARF-4, choosing dental biofilms as an example. Fluorescent emissions of C-SNARF-4 can be used to calculate extracellular pH irrespective of the dye concentration. We showed that at pH values of <6, C-SNARF-4 stained 15 bacterial species frequently isolated from dental biofilm and visualized the entire bacterial biomass in in vivo-grown dental biofilms with unknown species composition. We then employed digital image analysis to remove the bacterial biomass from the microscopic images and adequately calculate extracellular pH values. As a proof of concept, we monitored the extracellular pH drop in in vivo-grown dental biofilms fermenting glucose. The combination of pH ratiometry with C-SNARF-4 and digital image analysis allows the accurate monitoring of extracellular pH in bacterial biofilms in three dimensions in real time and represents a significant improvement to previously employed methods of biofilm pH measurement.

摘要

细菌生物膜细胞外基质的pH值对于微生物代谢至关重要。生物膜具有复杂的三维结构,其特征是相邻区域存在化学性质不同的微环境。几十年来,生物膜中的pH测量仅限于使用电极监测总体pH值。尽管已经开发出具有更好空间分辨率的pH微电极,但它们无法实时监测生物膜中的水平pH梯度。定量荧光显微镜可以克服这些问题,但迄今为止所采用的方法都无法准确区分细胞外和细胞内的微生物pH值,也无法在生物膜的所有区域可视化细胞外pH值。在此,我们以牙菌斑生物膜为例,开发了一种使用比率型pH敏感染料C-SNARF-4通过显微镜可靠监测细胞外生物膜pH值的方法。无论染料浓度如何,C-SNARF-4的荧光发射都可用于计算细胞外pH值。我们发现,在pH值<6时,C-SNARF-4可对15种经常从牙菌斑生物膜中分离出的细菌进行染色,并可视化体内生长的、物种组成未知的牙菌斑生物膜中的整个细菌生物量。然后,我们采用数字图像分析从显微镜图像中去除细菌生物量,并准确计算细胞外pH值。作为概念验证,我们监测了体内生长的发酵葡萄糖的牙菌斑生物膜中的细胞外pH下降情况。pH比率测定法与C-SNARF-4和数字图像分析相结合,能够实时在三维空间中准确监测细菌生物膜中的细胞外pH值,代表了对先前采用的生物膜pH测量方法的重大改进。

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