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Biofilms’ Role in Planktonic Cell Proliferation

机译:生物膜在浮游细胞增殖中的作用

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The detachment of single cells from biofilms is an intrinsic part of this surface-associated mode of bacterial existence. Pseudomonas sp. strain CT07gfp biofilms, cultivated in microfluidic channels under continuous flow conditions, were subjected to a range of liquid shear stresses (9.42 mPa to 320 mPa). The number of detached planktonic cells was quantified from the effluent at 24-h intervals, while average biofilm thickness and biofilm surface area were determined by confocal laser scanning microscopy and image analysis. Biofilm accumulation proceeded at the highest applied shear stress, while similar rates of planktonic cell detachment was maintained for biofilms of the same age subjected to the range of average shear rates. The conventional view of liquid-mediated shear leading to the passive erosion of single cells from the biofilm surface, disregards the active contribution of attached cell metabolism and growth to the observed detachment rates. As a complement to the conventional conceptual biofilm models, the existence of a biofilm surface-associated zone of planktonic cell proliferation is proposed to highlight the need to expand the traditional perception of biofilms as promoting microbial survival, to include the potential of biofilms to contribute to microbial proliferation.
机译:从生物膜上分离单个细胞是这种与细菌存在表面相关的模式的内在部分。假单胞菌在连续流动条件下在微流体通道中培养的CT07gfp菌株生物膜受到一系列的液体剪切应力(9.42 mPa至320 mPa)。每隔24小时从流出物中定量分离浮游细胞的数量,同时通过共聚焦激光扫描显微镜和图像分析确定平均生物膜厚度和生物膜表面积。生物膜的积累在最高的剪切应力下进行,而相同年龄的生物膜在平均剪切率范围内则保持了相似的浮游细胞脱离速率。液体介导的剪切导致单细胞从生物膜表面被动侵蚀的传统观点忽略了附着的细胞代谢和生长对观察到的分离速率的积极贡献。作为对传统概念生物膜模型的补充,有人提出存在与浮游细胞增殖相关的生物膜表面相关区域,以突出显示有必要扩大对生物膜促进微生物存活的传统认识,包括生物膜有助于微生物增殖。

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