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水相双系统衍生生物膜用于细菌相互作用研究。

Aqueous two-phase system-derived biofilms for bacterial interaction studies.

机构信息

School of Nano-Bioscience and Chemical Engineering, Ulsan National Institute of Science and Technology, Banyeon-ri 100, Ulsan, 689-798, Republic of Korea.

出版信息

Biomacromolecules. 2012 Sep 10;13(9):2655-61. doi: 10.1021/bm300500y. Epub 2012 Aug 7.

Abstract

We describe patterning of bacterial biofilms using polymer-based aqueous two-phase system (ATPS) microprinting protocols. The fully aqueous but selectively bacteria-partitioning nature of the ATPS allows spatially distinct localization of suspensions of bacteria such as Pseudomonas aeruginosa and Escherichia coli with high precision. The ATPS patterned bacterial suspensions form spatially distinct biofilms over time. Due to the fully aqueous and gentle noncontact printing procedures employed, coculture biofilms composed of multiple types of bacteria could be printed not only adjacent to each other but also directly over another layer of existing biofilm. In addition, the ATPS environment also allows free diffusion of small molecules between spatially distinct and localized bacterial suspensions and biofilms. This enables biofilms to chemically affect or be affected by neighboring biofilms or planktonic cells, even if they consist of different strains or species. We show that a β-lactamase producing biofilm confers ampicillin resistance to neighboring nonresistant planktonic cells, as seen by a 3,600-fold increase in survival of the ampicillin-sensitive strain. These examples demonstrate the ability of ATPS-based biofilm patterning methods to enable unique studies on commensalistic effects between bacterial species.

摘要

我们描述了使用基于聚合物的双水相系统(ATPS)微印刷协议对细菌生物膜进行图案化。ATPS 完全是水性的,但具有选择性的细菌分离特性,允许高度精确地定位悬浮的细菌,如铜绿假单胞菌和大肠杆菌。随着时间的推移,ATPS 图案化的细菌悬浮液会形成空间上不同的生物膜。由于采用了完全水性的温和非接触式打印程序,可以不仅将多种类型的细菌共培养生物膜打印在一起,而且还可以直接在现有生物膜的另一层上打印。此外,ATPS 环境还允许小分子在空间上不同且局部化的细菌悬浮液和生物膜之间自由扩散。这使得生物膜能够通过化学方式影响或被相邻的生物膜或浮游细胞影响,即使它们由不同的菌株或物种组成。我们表明,产生β-内酰胺酶的生物膜使氨苄青霉素敏感菌株的存活率增加了 3600 倍,从而使邻近的非耐药浮游细胞获得氨苄青霉素抗性。这些例子表明,基于 ATPS 的生物膜图案化方法能够使我们能够对细菌物种之间的共生效应进行独特的研究。

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