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Microfluidic flow confinement to avoid chemotaxis-based upstream growth in a biofilm flow cell reactor

机译:微流体流动限制以避免生物膜流动细胞反应器中的基于趋化性的上游生长

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摘要

Introduction of a bacterial inoculant into a chemostat bioreactor can lead to unwanted contamination of upstream elements via chemotaxis. This can result in biofilm growth in connective tubing, valves and even the medium source reservoir itself, thus complicating the conditions of the applied liquid phase and impeding proper chemostat functionality. Applied to biofilm forming Pseudomonas fluorescens bacteria, we tested two different microfluidic flow confinement methods designed to impede upstream contamination. The first isolated biofilm growth from the relatively stagnant zones within the microchannel corners, and in the second a flow enhancement element was introduced to increase flow velocities and shear forces. Both methods showed improvement over a control design, but flow enhancement showed the best performance by delaying or preventing bacterial contamination of upstream elements, ensuring stability of the applied liquid media conditions for the entire duration of the experiments. This simple passive element has the potential for wide use as it is easy to implement and can be optimised for different experimental requirements.
机译:将细菌孕育剂引入化学抑制剂的生物反应器可以通过趋化性导致上游元素的不需要的污染。这可能导致结缔组织,阀门甚至中源贮存器本身的生物膜生长,从而使施加的液相的条件复杂化并阻碍适当的化疗功能。应用于生物膜形成假单胞菌荧光细菌,我们测试了两种不同的微流体流动限制方法,旨在阻碍上游污染。引入了来自微通道角内的相对停滞区域的第一分离的生物膜生长,并引入了第二流动增强元件以增加流速和剪切力。两种方法显示出对对照设计的改进,但通过延迟或预防上游元件的细菌污染,流量增强显示了最佳性能,确保了施加的液体介质条件的稳定性在实验的整个持续时间内。这种简单的无源元件具有广泛使用的可能性,因为它易于实现,可针对不同的实验要求进行优化。

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