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The involvement of cell-to-cell signals in the development of a bacterial biofilm

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TLDR
The involvement of an intercellular signal molecule in the development of Pseudomonas aeruginosa biofilms suggests possible targets to control biofilm growth on catheters, in cystic fibrosis, and in other environments where P. aerug inosaBiofilms are a persistent problem.
Abstract
Bacteria in nature often exist as sessile communities called biofilms. These communities develop structures that are morphologically and physiologically differentiated from free-living bacteria. A cell-to-cell signal is involved in the development of Pseudomonas aeruginosa biofilms. A specific signaling mutant, a lasI mutant, forms flat, undifferentiated biofilms that unlike wild-type biofilms are sensitive to the biocide sodium dodecyl sulfate. Mutant biofilms appeared normal when grown in the presence of a synthetic signal molecule. The involvement of an intercellular signal molecule in the development of P. aeruginosa biofilms suggests possible targets to control biofilm growth on catheters, in cystic fibrosis, and in other environments where P. aeruginosa biofilms are a persistent problem.

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Citations
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Journal ArticleDOI

Bacterial biofilms : A common cause of persistent infections

TL;DR: Improvements in understanding of the genetic and molecular basis of bacterial community behavior point to therapeutic targets that may provide a means for the control of biofilm infections.
Journal ArticleDOI

Bacterial biofilms: from the natural environment to infectious diseases.

TL;DR: It is evident that biofilm formation is an ancient and integral component of the prokaryotic life cycle, and is a key factor for survival in diverse environments.
Journal ArticleDOI

Biofilms: Survival Mechanisms of Clinically Relevant Microorganisms

TL;DR: It is understood that biofilms are universal, occurring in aquatic and industrial water systems as well as a large number of environments and medical devices relevant for public health, and that treatments may be based on inhibition of genes involved in cell attachment and biofilm formation.
Journal ArticleDOI

Quorum Sensing in Bacteria

TL;DR: The evolution of quorum sensing systems in bacteria could, therefore, have been one of the early steps in the development of multicellularity.
Journal ArticleDOI

Biofilms: microbial life on surfaces.

TL;DR: A greater understanding of biofilm processes should lead to novel, effective control strategies for biofilm control and a resulting improvement in patient management.
References
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Journal ArticleDOI

Colorimetric Method for Determination of Sugars and Related Substances

TL;DR: In this article, a method was developed to determine submicro amounts of sugars and related substances using a phenol-sulfuric acid reaction, which is useful for the determination of the composition of polysaccharides and their methyl derivatives.
PatentDOI

FACS-optimized mutants of the green fluorescent protein (GFP)

TL;DR: In this article, three classes of GFP mutants having single excitation maxima around 488 nm are shown to be brighter than wild-type GFP following 488-nm excitation.
Journal ArticleDOI

Quorum sensing in bacteria: the LuxR-LuxI family of cell density-responsive transcriptional regulators.

TL;DR: How the marine luminescent bacterium V. fischeri uses the LuxR and LuxI proteins for intercellular communication is reviewed and a newly discovered family of LuxRand LuxI homologs in diverse bacterial species is described.
Journal ArticleDOI

Roles of Pseudomonas aeruginosa las and rhl quorum-sensing systems in control of elastase and rhamnolipid biosynthesis genes.

TL;DR: The roles of the rhl and las quorum-sensing systems in virulence gene expression are characterized and RNA analysis of the wild-type strain revealed that rhlAB is organized as an operon.
Journal ArticleDOI

Structure of the autoinducer required for expression of Pseudomonas aeruginosa virulence genes

TL;DR: In this article, a quantitative bioassay for PAI was developed by cloning a lasB::lacZ fusion and a lasR gene under control of the lac promoter in Escherichia coli.
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