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牙菌斑细胞外pH值的比率成像

Ratiometric Imaging of Extracellular pH in Dental Biofilms.

作者信息

Schlafer Sebastian, Dige Irene

机构信息

Department of Dentistry, Aarhus University;

Department of Dentistry, Aarhus University.

出版信息

J Vis Exp. 2016 Mar 9(109):53622. doi: 10.3791/53622.

Abstract

The pH in bacterial biofilms on teeth is of central importance for dental caries, a disease with a high worldwide prevalence. Nutrients and metabolites are not distributed evenly in dental biofilms. A complex interplay of sorption to and reaction with organic matter in the biofilm reduces the diffusion paths of solutes and creates steep gradients of reactive molecules, including organic acids, across the biofilm. Quantitative fluorescent microscopic methods, such as fluorescence life time imaging or pH ratiometry, can be employed to visualize pH in different microenvironments of dental biofilms. pH ratiometry exploits a pH-dependent shift in the fluorescent emission of pH-sensitive dyes. Calculation of the emission ratio at two different wavelengths allows determining local pH in microscopic images, irrespective of the concentration of the dye. Contrary to microelectrodes the technique allows monitoring both vertical and horizontal pH gradients in real-time without mechanically disturbing the biofilm. However, care must be taken to differentiate accurately between extra- and intracellular compartments of the biofilm. Here, the ratiometric dye, seminaphthorhodafluor-4F 5-(and-6) carboxylic acid (C-SNARF-4) is employed to monitor extracellular pH in in vivo grown dental biofilms of unknown species composition. Upon exposure to glucose the dye is up-concentrated inside all bacterial cells in the biofilms; it is thus used both as a universal bacterial stain and as a marker of extracellular pH. After confocal microscopic image acquisition, the bacterial biomass is removed from all pictures using digital image analysis software, which permits to exclusively calculate extracellular pH. pH ratiometry with the ratiometric dye is well-suited to study extracellular pH in thin biofilms of up to 75 µm thickness, but is limited to the pH range between 4.5 and 7.0.

摘要

牙齿上细菌生物膜的pH值对龋齿至关重要,龋齿是一种在全球范围内高发的疾病。营养物质和代谢产物在牙齿生物膜中分布不均。生物膜中吸附到有机物上并与之发生反应的复杂相互作用减少了溶质的扩散路径,并在生物膜中形成了包括有机酸在内的反应性分子的陡峭梯度。定量荧光显微镜方法,如荧光寿命成像或pH比率测定法,可用于可视化牙齿生物膜不同微环境中的pH值。pH比率测定法利用了对pH敏感的染料荧光发射的pH依赖性变化。计算两个不同波长处的发射比率可确定微观图像中的局部pH值,而与染料浓度无关。与微电极不同,该技术可实时监测垂直和水平pH梯度,而不会对生物膜造成机械干扰。然而,必须注意准确区分生物膜的细胞外和细胞内区室。在这里,使用比率染料半萘罗丹明氟-4F 5-(和-6)羧酸(C-SNARF-4)来监测未知物种组成的体内生长牙齿生物膜的细胞外pH值。暴露于葡萄糖后,染料在生物膜中的所有细菌细胞内被浓缩;因此,它既用作通用细菌染色剂,也用作细胞外pH值的标记物。在共聚焦显微镜图像采集后,使用数字图像分析软件从所有图片中去除细菌生物量,从而仅计算细胞外pH值。使用比率染料的pH比率测定法非常适合研究厚度达μm的薄生物膜中的细胞外pH值,但仅限于4.5至7.0的pH范围。 75

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