生物膜
微流控
生物系统
铜绿假单胞菌
生物
胞外聚合物
细菌
纳米技术
材料科学
遗传学
作者
Yuzhen Zhang,Yumin Cai,Lingbin Zeng,Peng Liu,Z. Luyan,Jintao Liu
出处
期刊:Small science
[Wiley]
日期:2022-09-20
卷期号:2 (10): 2200047-2200047
被引量:19
标识
DOI:10.1002/smsc.202200047
摘要
Bacterial biofilms play essential roles in ecological environments and in human health. The spatial heterogeneity of biofilms is crucial to their resistance and collective behavior, while quantitative analysis of these biofilm‐specific features is limited. Here, a microfluidic approach is developed to address this issue. Through a special design of microfluidic chamber and spatially controllable bacteria seeding, biofilms are cultivated with customized semi‐2D structure, which enables quantitative measurements of spatially heterogeneous features with time‐lapse microscopy. The advantages of the proposed method are demonstrated via two examples on biofilm homeostasis and stress response, respectively, where the functionally important spatiotemporal dynamics is delineated. In homeostasis, it is found that Pseudomonas aeruginosa biofilms use spatially organized extracellular matrix to preserve iron chelators within their boundaries while maximizing free sharing within the community. In stress response, the spatial distribution of antibiotics in biofilms and how a change in energy metabolism leads to redistribution of drugs over space are elucidated. The proposed method enables cultivating biofilms formed by a wide range of species and even multiple biofilms, which provides a tractable approach to understanding the spatiotemporal features of biofilms formed by environmentally and clinically important bacteria.
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