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Revealing region-specific biofilm viscoelastic properties by means of a micro-rheological approach

机译:通过微流变方法揭示特定于区域的生物膜粘弹性质

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摘要

Particle-tracking microrheology is an in situ technique that allows quantification of biofilm material properties. It overcomes the limitations of alternative techniques such as bulk rheology or force spectroscopy by providing data on region specific material properties at any required biofilm location and can be combined with confocal microscopy and associated structural analysis. This article describes single particle tracking microrheology combined with confocal laser scanning microscopy to resolve the biofilm structure in 3 dimensions and calculate the creep compliances locally. Samples were analysed from Pseudomonas fluorescens biofilms that were cultivated over two timescales (24 h and 48 h) and alternate ionic conditions (with and without calcium chloride supplementation). The region-based creep compliance analysis showed that the creep compliance of biofilm void zones is the primary contributor to biofilm mechanical properties, contributing to the overall viscoelastic character.
机译:颗粒跟踪微流变学是一种原位技术,可以量化生物膜材料的特性。通过在任何所需的生物膜位置提供有关区域特定材料特性的数据,它克服了替代技术(如整体流变学或力谱学)的局限性,并且可以与共聚焦显微镜和相关的结构分析结合使用。本文介绍了单粒子跟踪微流变技术与共聚焦激光扫描显微镜相结合的方法,可在3维上解析生物膜结构并局部计算蠕变柔量。分析了荧光假单胞菌生物膜的样品,该膜在两个时标(24?h和48?h)和交替的离子条件下(添加和不添加氯化钙)培养。基于区域的蠕变柔量分析表明,生物膜空隙区的蠕变柔量是生物膜机械性能的主要贡献者,有助于整体的粘弹性。

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