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Three-Dimensional Organization of Self-Encapsulating Gluconobacter oxydans Bacterial Cells

机译:自封装氧化葡糖杆菌细菌细胞的三维组织

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摘要

Self-organized bacteria have been the subject of interest for a number of applications, including the construction of microbial fuel cells. In this paper, we describe the formation of a self-organized, three-dimensional network that is constructed using Gluconobacter oxydans B-1280 cells in a hydrogel consisting of poly(vinyl alcohol) (PVA) with N -vinyl pyrrolidone (VP) as a cross-linker, in which the bacterial cells are organized in a particular side-by-side alignment. We demonstrated that nonmotile G. oxydans cells are able to reorganize themselves, transforming and utilizing PVA–VP polymeric networks through the molecular interactions of bacterial extracellular polysaccharide (EPS) components such as acetan, cellulose, dextran, and levan. Molecular dynamics simulations of the G. oxydans EPS components interacting with the hydrogel polymeric network showed that the solvent-exposed loops of PVA–VP extended and engaged in bacterial self-encapsulation.
机译:自组织细菌已成为包括微生物燃料电池构造在内的许多应用的关注主题。在本文中,我们描述了使用氧化葡糖杆菌B-1280细胞在由聚乙烯醇(PVA)和N-组成的水凝胶中构建的自组织三维网络的形成。乙烯基吡咯烷酮(VP)作为交联剂,其中细菌细胞以特定的并排排列方式组织。我们证明了不运动的G。 oxydans细胞能够重组自身,通过细菌胞外多糖(EPS)组分(例如,丙酮,纤维素,葡聚糖和levan)的分子相互作用来转化和利用PVA-VP聚合物网络。 G的分子动力学模拟。 oxydans EPS组分与水凝胶聚合物网络相互作用表明,PVA-VP的溶剂暴露环扩展并参与细菌的自包封。

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