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微载体药敏试验在 peg 盖生长的微生物:高通量筛选的小型生物膜模型。

Microtiter susceptibility testing of microbes growing on peg lids: a miniaturized biofilm model for high-throughput screening.

机构信息

Department of Microbiology, University of Washington School of Medicine, Seattle, Washington, USA.

出版信息

Nat Protoc. 2010 Jul;5(7):1236-54. doi: 10.1038/nprot.2010.71. Epub 2010 Jun 10.

Abstract

Batch culture of biofilms on peg lids is a versatile method that can be used for microtiter determinations of biofilm antimicrobial susceptibility. In this paper, we describe a core protocol and a set of parameters (surface composition, the rate of rocking or orbital motion, temperature, cultivation time, inoculum size, atmospheric gases and nutritional medium) that can be adjusted to grow single- or multispecies biofilms on peg surfaces. Mature biofilms formed on peg lids can then be fitted into microtiter plates containing test agents. After a suitable exposure time, biofilm cells are disrupted into a recovery medium using sonication. Microbicidal endpoints can be determined qualitatively using optical density measurements or quantitatively using viable cell counting. Once equipment is calibrated and growth conditions are at an optimum, the procedure requires approximately 5 h of work over 4-6 d. This efficient method allows antimicrobial agents and exposure conditions to be tested against biofilms on a high-throughput scale.

摘要

聚乙二醇(PEG)瓶盖的菌膜分批培养是一种通用方法,可用于微孔板法测定生物膜的抗微生物药物敏感性。在本文中,我们描述了一个核心方案和一组参数(表面组成、摇动或轨道运动的速度、温度、培养时间、接种物大小、大气气体和营养培养基),可用于在 PEG 表面上生长单种或多种生物膜。然后,可将在 PEG 盖子上形成的成熟菌膜拟合到含有测试剂的微孔板中。经过适当的暴露时间后,使用超声处理将菌膜细胞分散到回收培养基中。使用光密度测量可定性地确定杀菌终点,或者使用活菌计数可定量地确定杀菌终点。一旦设备经过校准且生长条件达到最佳状态,该程序大约需要在 4-6 天内完成 5 小时的工作。这种高效的方法可在高通量水平上测试抗微生物药物和暴露条件对生物膜的作用。

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