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当通过结晶紫微量滴定板法对生物膜进行定量时,应考虑生物膜形成和分散的动力学。

The dynamics of biofilm development and dispersal should be taken into account when quantifying biofilm via the crystal violet microtiter plate assay.

作者信息

Andersen Jens Bo, Rybtke Morten, Tolker-Nielsen Tim

机构信息

Costerton Biofilm Center, Department of Immunology and Microbiology, University of Copenhagen, DK-2200, Copenhagen, Denmark.

出版信息

Biofilm. 2024 Jun 20;8:100207. doi: 10.1016/j.bioflm.2024.100207. eCollection 2024 Dec.

Abstract

The crystal violet microtiter plate biofilm assay is often used to compare the amount of biofilm formed by a mutant versus wild-type or a compound-treated biofilm versus the non-treatment control. In many of these studies the amount of biofilm is assessed only at one single time point. However, if the dynamics of biofilm development of the mutant (or compound-treated biofilm) is different than that of the wild-type (or non-treatment control), then biofilm quantification at a single time point may give misleading results. To overcome this shortcoming of the common biofilm quantification technique, we recommend to use a serial dilution-based crystal violet microtiter plate biofilm assay for easy assessment of the dynamics of biofilm development and dispersal. We demonstrate that the dilution-resolved crystal violet assay displays the dynamics of biofilm development and dispersal as efficient as a time-resolved crystal violet assay. In addition, focusing on mutants of different parts of the c-di-GMP signaling system in , we provide an example illustrating the need to assess biofilm dynamics instead of quantifying biofilm biomass at a single time point.

摘要

结晶紫微量滴定板生物膜测定法常用于比较突变体与野生型形成的生物膜量,或化合物处理的生物膜与未处理对照的生物膜量。在许多此类研究中,生物膜量仅在一个单一时间点进行评估。然而,如果突变体(或化合物处理的生物膜)的生物膜发育动态与野生型(或未处理对照)不同,那么在单一时间点进行生物膜定量可能会得出误导性结果。为克服这种常见生物膜定量技术的这一缺点,我们建议使用基于系列稀释的结晶紫微量滴定板生物膜测定法,以便轻松评估生物膜发育和分散的动态。我们证明,稀释分辨结晶紫测定法显示生物膜发育和分散动态的效率与时间分辨结晶紫测定法相同。此外,我们聚焦于[具体研究对象]中c-di-GMP信号系统不同部分的突变体,提供了一个例子来说明需要评估生物膜动态而非在单一时间点对生物膜生物量进行定量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcd2/11253283/02e6159ddd67/gr1.jpg

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