Quantitative analysis of amyloid-integrated biofilms formed by uropathogenic Escherichia coli at the air-liquid interface
about
Plasticity of Candida albicans BiofilmsDynamics of the formation of a hydrogel by a pathogenic amyloid peptide: islet amyloid polypeptide.New Weapons to Fight Old Enemies: Novel Strategies for the (Bio)control of Bacterial Biofilms in the Food IndustryAdhesion Potential of Intestinal Microbes Predicted by Physico-Chemical Characterization MethodsAdhesion mechanisms of curli subunit CsgA to abiotic surfacesCellulose as an architectural element in spatially structured Escherichia coli biofilmsBacterial floc mediated rapid streamer formation in creeping flowsStrong underwater adhesives made by self-assembling multi-protein nanofibresMolecular determinants of mechanical properties of V. cholerae biofilms at the air-liquid interface.Community behavior and amyloid-associated phenotypes among a panel of uropathogenic E. coliBottom-up and top-down solid-state NMR approaches for bacterial biofilm matrix composition.Congo Red Interactions with Curli-Producing E. coli and Native Curli Amyloid Fibers.The Biology of the Escherichia coli Extracellular MatrixGram-negative bacteria can also form pellicles.Solid-State NMR for Bacterial Biofilms.Methodologies for Studying B. subtilis Biofilms as a Model for Characterizing Small Molecule Biofilm Inhibitors.Self-assembling peptide and protein amyloids: from structure to tailored function in nanotechnology.Bacillus subtilis Bacteria Generate an Internal Mechanical Force within a Biofilm.Disruption of Escherichia coli amyloid-integrated biofilm formation at the air-liquid interface by a polysorbate surfactantSum of the parts: composition and architecture of the bacterial extracellular matrixIn-situ quantification of the interfacial rheological response of bacterial biofilms to environmental stimuli.The Physiological and Pathological Implications of the Formation of Hydrogels, with a Specific Focus on Amyloid Polypeptides.Films of Bacteria at Interfaces (FBI): Remodeling of Fluid Interfaces by Pseudomonas aeruginosa.Surface shear viscosity as a macroscopic probe of amyloid fibril formation at a fluid interface.Non-equilibrium nature of two-dimensional isotropic and nematic coexistence in amyloid fibrils at liquid interfaces.3D bacterial cellulose biofilms formed by foam templating
P2860
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P2860
Quantitative analysis of amyloid-integrated biofilms formed by uropathogenic Escherichia coli at the air-liquid interface
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
Quantitative analysis of amylo ...... li at the air-liquid interface
@ast
Quantitative analysis of amylo ...... li at the air-liquid interface
@en
type
label
Quantitative analysis of amylo ...... li at the air-liquid interface
@ast
Quantitative analysis of amylo ...... li at the air-liquid interface
@en
prefLabel
Quantitative analysis of amylo ...... li at the air-liquid interface
@ast
Quantitative analysis of amylo ...... li at the air-liquid interface
@en
P2093
P2860
P1433
P1476
Quantitative analysis of amylo ...... li at the air-liquid interface
@en
P2093
Cynthia Wu
Gerald G Fuller
Ji Youn Lim
P2860
P304
P356
10.1016/J.BPJ.2012.06.049
P407
P577
2012-08-01T00:00:00Z