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一种新型基于微孔板的分光光度法,用于定量评估淡水细菌共聚动力学。

A novel microplate-based spectrophotometric method for the quantitative assessment of freshwater bacterial coaggregation kinetics.

机构信息

Department of Epidemiology, School of Public Health, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Biofouling. 2023 Mar;39(3):303-315. doi: 10.1080/08927014.2023.2212596. Epub 2023 May 25.

Abstract

Coaggregation, the specific recognition and adhesion of genetically distinct bacteria, is proposed to contribute to the development of freshwater biofilms. This work aimed to develop a microplate-based system to measure and model the kinetics of freshwater bacterial coaggregation. 2.1 and 2.13 were evaluated for coaggregation ability using 24-well microplates containing novel dome shaped wells (DSWs) and standard flat-bottom wells. Results were compared to a tube-based visual aggregation assay. The DSWs facilitated the reproducible detection of coaggregation via spectrophotometry and the estimation of coaggregation kinetics using a linked mathematical model. Quantitative analysis using DSWs was more sensitive than the visual tube aggregation assay and subject to substantially less variation than flat-bottom wells. Collectively these results demonstrate the utility of the DSW-based method and improve upon the current toolkit for studying freshwater bacterial coaggregation.

摘要

共聚,即具有遗传差异的细菌的特异性识别和黏附,被认为有助于淡水生物膜的形成。本研究旨在开发一种基于微孔板的系统,以测量和模拟淡水细菌共聚的动力学。使用含有新型穹顶形孔(DSW)和标准平底孔的 24 孔微孔板,评估了 2.1 和 2.13 的共聚能力,并与基于管的可视化聚集测定法进行了比较。DSW 可通过分光光度法重现性地检测共聚,并使用相关联的数学模型估算共聚动力学。使用 DSW 进行定量分析比视觉管聚集测定法更灵敏,并且比平底孔的变异性小得多。总之,这些结果证明了基于 DSW 的方法的实用性,并改进了目前用于研究淡水细菌共聚的工具包。

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