Bacteria deploy a range of chemistries to regulate their behaviour and respond to their environment. Quorum sensing is one mean by which bacteria use chemical reactions to modulate pre-infection behaviour such as surface attachment. Polymers that can interfere with bacterial adhesion or the chemical reactions used for quorum sensing are thus a potential means to control bacterial population responses. Here we report how polymeric "bacteria sequestrants", designed to bind to bacteria through electrostatic interactions and thus inhibit bacterial adhesion to surfaces, induce the expression of quorum sensing controlled phenotypes as a consequence of cell clustering. A combination of polymer and analytical chemistry, biological assays and comput...
Biofilms are surface-attached microbial communities embedded in their self-generated extracellular p...
Introduction: Quorum sensing (QS) in the word means a gathering or a fixed number of objectives and ...
Here we present the first molecular imprinted polymer (MIP) that is able to attenuate the biofilm fo...
Bacteria deploy a range of chemistries to regulate their behaviour and respond to their environment....
In order to develop novel antibacterial therapies that combine anti-adhesion, anti-quorum sensing an...
It is generally accepted that the majority of Gram-negative and Gram-positive bacteria communicate v...
New anti-infective materials are needed urgently as alternatives to conventional biocides. It has re...
Bacterial phenotypes, such as biofilm formation, antibiotic resistance and virulence expression, are...
The synthetic polymers reported in this thesis are able to bind the small molecule autoinducer-2 (AI...
The detection and inactivation of pathogenic strains of bacteria continues to be an important therap...
Bacterial attachment and subsequent biofilm formation are key challenges to the long term performanc...
Biofilm production and expression of virulence factors are correlated with Quorum Sensing (QS), a de...
Bacteria have fascinating and diverse social lives. They display coordinated group behaviors regulat...
Bacteria adhere to almost any surface. Medical-device biofilm-centred infections pose an enormous th...
Here, we evaluate how cationic gallic acid-triethylene glycol (GATG) dendrimers interact with bacter...
Biofilms are surface-attached microbial communities embedded in their self-generated extracellular p...
Introduction: Quorum sensing (QS) in the word means a gathering or a fixed number of objectives and ...
Here we present the first molecular imprinted polymer (MIP) that is able to attenuate the biofilm fo...
Bacteria deploy a range of chemistries to regulate their behaviour and respond to their environment....
In order to develop novel antibacterial therapies that combine anti-adhesion, anti-quorum sensing an...
It is generally accepted that the majority of Gram-negative and Gram-positive bacteria communicate v...
New anti-infective materials are needed urgently as alternatives to conventional biocides. It has re...
Bacterial phenotypes, such as biofilm formation, antibiotic resistance and virulence expression, are...
The synthetic polymers reported in this thesis are able to bind the small molecule autoinducer-2 (AI...
The detection and inactivation of pathogenic strains of bacteria continues to be an important therap...
Bacterial attachment and subsequent biofilm formation are key challenges to the long term performanc...
Biofilm production and expression of virulence factors are correlated with Quorum Sensing (QS), a de...
Bacteria have fascinating and diverse social lives. They display coordinated group behaviors regulat...
Bacteria adhere to almost any surface. Medical-device biofilm-centred infections pose an enormous th...
Here, we evaluate how cationic gallic acid-triethylene glycol (GATG) dendrimers interact with bacter...
Biofilms are surface-attached microbial communities embedded in their self-generated extracellular p...
Introduction: Quorum sensing (QS) in the word means a gathering or a fixed number of objectives and ...
Here we present the first molecular imprinted polymer (MIP) that is able to attenuate the biofilm fo...