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New Device for High-Throughput Viability Screening of Flow Biofilms

机译:流动生物膜高通量生存力筛选的新设备

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摘要

Control of biofilms requires rapid methods to identify compounds effective against them and to isolate resistance-compromised mutants for identifying genes involved in enhanced biofilm resistance. While rapid screening methods for microtiter plate well (“static”) biofilms are available, there are no methods for such screening of continuous flow biofilms (“flow biofilms”). Since the latter biofilms more closely approximate natural biofilms, development of a high-throughput (HTP) method for screening them is desirable. We describe here a new method using a device comprised of microfluidic channels and a distributed pneumatic pump (BioFlux) that provides fluid flow to 96 individual biofilms. This device allows fine control of continuous or intermittent fluid flow over a broad range of flow rates, and the use of a standard well plate format provides compatibility with plate readers. We show that use of green fluorescent protein (GFP)-expressing bacteria, staining with propidium iodide, and measurement of fluorescence with a plate reader permit rapid and accurate determination of biofilm viability. The biofilm viability measured with the plate reader agreed with that determined using plate counts, as well as with the results of fluorescence microscope image analysis. Using BioFlux and the plate reader, we were able to rapidly screen the effects of several antimicrobials on the viability of Pseudomonas aeruginosa PAO1 flow biofilms.
机译:控制生物膜需要快速的方法来鉴定对它们有效的化合物,并分离抗性受损的突变体,以鉴定参与增强的生物膜抗性的基因。尽管可以使用微量滴定板孔(“静态”)生物膜的快速筛选方法,但没有用于连续流动生物膜(“流动生物膜”)的这种筛选方法。由于后一种生物膜更接近天然生物膜,因此需要开发用于筛选它们的高通量(HTP)方法。我们在这里介绍一种使用由微流体通道和分布式气动泵(BioFlux)组成的设备的新方法,该设备可为96个生物膜提供流体流。该设备可以在很宽的流速范围内对连续或间歇的流体流量进行精细控制,并且标准孔板格式的使用提供了与读板器的兼容性。我们显示,使用表达绿色荧光蛋白(GFP)的细菌,碘化丙啶染色以及用平板阅读器测量荧光可以快速而准确地确定生物膜的生存能力。用酶标仪测定的生物膜活力与用酶标仪测定的生物膜活力以及荧光显微镜图像分析的结果一致。使用BioFlux和酶标仪,我们能够快速筛选几种抗微生物药对铜绿假单胞菌PAO1流生物膜活力的影响。

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