Bacteria exist, in most environments, as complex, organised communities of sessile cells embedded within a matrix of self-produced, hydrated extracellular polymeric substances known as biofilms. Bacterial biofilms represent a ubiquitous and predominant cause of both chronic infections and infections associated with the use of indwelling medical devices such as catheters and prostheses. Such infections typically exhibit significantly enhanced tolerance to antimicrobial, biocidal and immunological challenge. This renders them difficult, sometimes impossible, to treat using conventional chemotherapeutic agents. Effective alternative approaches for prevention and eradication of biofilm associated chronic and device-associated infections are the...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Biofilms are microbial communities encased in a protective matrix composed of exopolymeric substance...
Atmospheric pressure plasma has proven to be effective for the inactivation of bacterial cells in ma...
In this study, an in-house built atmospheric. pressure non-thermal plasma jet has been investigated ...
We investigate the ability to disrupt and limit growth biofilms of Pseudomonas aeruginosa using appl...
Biofilms are microbial communities attached to a surface and embedded in a matrix composed of exopol...
Cold atmospheric pressure plasma (APP) is a recent, cutting-edge antimicrobial treatment. It has the...
Biofilms are microbial communities attached to a surface and embedded in a matrix composed of exopol...
Aim: Study of the biocidal effect of a cold atmospheric-pressure plasma in ambient air on single-spe...
This study systematically assessed the inactivation mechanism on Staphylococcus aureus biofilms by a...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Biofilms are microbial communities encased in a protective matrix composed of exopolymeric substance...
Atmospheric pressure plasma has proven to be effective for the inactivation of bacterial cells in ma...
In this study, an in-house built atmospheric. pressure non-thermal plasma jet has been investigated ...
We investigate the ability to disrupt and limit growth biofilms of Pseudomonas aeruginosa using appl...
Biofilms are microbial communities attached to a surface and embedded in a matrix composed of exopol...
Cold atmospheric pressure plasma (APP) is a recent, cutting-edge antimicrobial treatment. It has the...
Biofilms are microbial communities attached to a surface and embedded in a matrix composed of exopol...
Aim: Study of the biocidal effect of a cold atmospheric-pressure plasma in ambient air on single-spe...
This study systematically assessed the inactivation mechanism on Staphylococcus aureus biofilms by a...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Plasmas produce various reactive species, which are known to be very effective in killing bacteria. ...
Biofilms are microbial communities encased in a protective matrix composed of exopolymeric substance...