Biofilms are highly organised colonies of microorganisms, at a surface or an interface, which are extremely resistant to treatment with biocides or antimicrobials. Consequently, biofilms are the primary cause of fouling and persistent infections in both industrial and clinical settings. Thus, there is a clear need to develop coatings that are able to prevent the growth of biofilms on surfaces. Herein, we report the development of polynitroxides for use as anti-biofilm coatings. We demonstrate that we can tune the composition of the nitroxide 2,2,6,6-tetramethyl-4-piperidyl methacrylate in a copolymer with methyl methacrylate in order to control the surface concentration of nitroxides in the resulting thin films. The prepared films are able ...
Bacterial biofilms on life-saving implanted medical devices are a serious problem in long-term. At p...
Bacterial biofilms are often difficult to treat and represent the main cause of chronic and recurren...
We pioneer a versatile surface modification strategy based on mussel-inspired oxidative catecholamin...
Biofilms are highly organised colonies of microorganisms, at a surface or an interface, which are ex...
Bacterial biofilm formation on medical devices is a threat to healthcare systems worldwide as bacter...
This research reports a sophisticated avenue for the fabrication of bio-inspired, multifunctional an...
The ability of nitric oxide (NO)-releasing polymer coatings to prevent biofilm formation is describe...
Infectious diseases are a leading cause of death worldwide. Many infections involve persistent biofi...
© 2014 Dr. Stefanie-Ann AlexanderConsiderable aesthetic and structural damage to culturally signific...
Bacteria are well known to form multicellular communities known as biofilms, which contribute to the...
ABSTRACT: Biofilms are increasingly recognized as playing a major role in human infectious diseases,...
Inhibiting pathogenic bacterial adherence on surfaces is an ongoing challenge to prevent the develop...
The emergence of multidrug-resistant bacteria associated with blood-contacting artificial materials ...
Biofilms are bacterial communities matured on any surface surrounded by a complex and nutrient rich ...
Biofilms are increasingly recognized as playing a major role in human infectious diseases, as they c...
Bacterial biofilms on life-saving implanted medical devices are a serious problem in long-term. At p...
Bacterial biofilms are often difficult to treat and represent the main cause of chronic and recurren...
We pioneer a versatile surface modification strategy based on mussel-inspired oxidative catecholamin...
Biofilms are highly organised colonies of microorganisms, at a surface or an interface, which are ex...
Bacterial biofilm formation on medical devices is a threat to healthcare systems worldwide as bacter...
This research reports a sophisticated avenue for the fabrication of bio-inspired, multifunctional an...
The ability of nitric oxide (NO)-releasing polymer coatings to prevent biofilm formation is describe...
Infectious diseases are a leading cause of death worldwide. Many infections involve persistent biofi...
© 2014 Dr. Stefanie-Ann AlexanderConsiderable aesthetic and structural damage to culturally signific...
Bacteria are well known to form multicellular communities known as biofilms, which contribute to the...
ABSTRACT: Biofilms are increasingly recognized as playing a major role in human infectious diseases,...
Inhibiting pathogenic bacterial adherence on surfaces is an ongoing challenge to prevent the develop...
The emergence of multidrug-resistant bacteria associated with blood-contacting artificial materials ...
Biofilms are bacterial communities matured on any surface surrounded by a complex and nutrient rich ...
Biofilms are increasingly recognized as playing a major role in human infectious diseases, as they c...
Bacterial biofilms on life-saving implanted medical devices are a serious problem in long-term. At p...
Bacterial biofilms are often difficult to treat and represent the main cause of chronic and recurren...
We pioneer a versatile surface modification strategy based on mussel-inspired oxidative catecholamin...