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Application of a pH-Sensitive Fluoroprobe (C-SNARF-4) for pH Microenvironment Analysis in Pseudomonas aeruginosa Biofilms

机译:pH敏感的荧光探针(C-SNARF-4)在铜绿假单胞菌生物膜中进行pH微环境分析的应用

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摘要

An important feature of microbial biofilms is the development of four-dimensional physical and chemical gradients in space and time. There is need for novel approaches to probe these so-called microenvironments to determine their effect on biofilm-specific processes. In this study, we describe the use of seminaphthorhodafluor-4F 5-(and-6) carboxylic acid (C-SNARF-4) for pH microenvironment analysis in Pseudomonas aeruginosa biofilms. C-SNARF-4 is a fluorescent ratiometric probe that allows pH quantification independent of probe concentration and/or laser intensity. By confocal scanning laser microscopy, C-SNARF-4 revealed pH heterogeneity throughout the biofilm in both the x,y and x,z planes, with values ranging from pH 5.6 (within the biofilm) to pH 7.0 (bulk fluid). pH values were typically remarkably different than those just a few micrometers away. Although this probe has been successfully used in a number of eukaryotic systems, problems have been reported which describe spectral emission changes as a result of macromolecular interactions with the fluorophore. To assess how the biofilm environment may influence fluorescent properties of the dye, fluorescence of C-SNARF-4 was quantified via spectrofluorometry while the probe was suspended in various concentrations of representative biofilm matrix components (i.e., proteins, polysaccharides, and bacterial cells) and growth medium. Surprisingly, our data demonstrate that few changes in emission spectra occur as a result of matrix interactions below pH 7. These studies suggest that C-SNARF-4 can be used as a reliable indicator of pH microenvironments, which may help elucidate their influence on the medical and geobiological roles of natural biofilms.
机译:微生物生物膜的一个重要特征是在空间和时间上形成了二维的物理和化学梯度。需要新颖的方法来探测这些所谓的微环境,以确定它们对生物膜特定过程的影响。在这项研究中,我们描述了在铜绿假单胞菌生物膜中进行pH微环境分析的半萘并氟4F 5-(和-6)羧酸(C-SNARF-4)。 C-SNARF-4是一种荧光比率式探针,可独立于探针浓度和/或激光强度进行pH定量。通过共聚焦扫描激光显微镜,C-SNARF-4揭示了整个生物膜在x,y和x,z平面中的pH异质性,其值范围从pH 5.6(在生物膜内)到pH 7.0(散装液)。 pH值通常与几微米以外的pH值明显不同。尽管该探针已成功用于许多真核生物系统中,但已报道了一些问题,这些问题描述了由于与荧光团发生大分子相互作用而导致的光谱发射变化。为了评估生物膜环境如何影响染料的荧光特性,将C-SNARF-4的荧光悬浮在不同浓度的代表性生物膜基质成分(即蛋白质,多糖和细菌细胞)中的同时,通过分光光度法进行定量。生长培养基。令人惊讶的是,我们的数据表明,在pH低于7的情况下,由于基体相互作用,发射光谱几乎没有发生变化。这些研究表明C-SNARF-4可以用作pH微环境的可靠指标,这可能有助于阐明它们对pH微环境的影响。天然生物膜的医学和地质生物学作用。

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