Investigating and understanding the response of microbes to various surfaces requires a versatile parametrisation of the surface, and multiple assays that captures the complexity of the biofilm structures. Here, Staphylococcus aureus biofilm viability, polysaccharide poly-N-acetylglucosamine, and proteins on the cell surface were analysed with agar plate- and well plate-based biofilm formation assays. Biofilms were grown on a set of nanostructured polymeric surfaces, which were thoroughly characterised for their surface chemistry and topography. Surface hydrophobicity, summit density as well as peak and valley structure were found to influence the microbial viability and exopolysaccharide abundance level in the agar plate assay. In the well...
Pseudomonas aeruginosa and Escherichia coli are able to form bacteria biofilms in the human body and...
Hypothesis: The nucleation of biofilms is known to be affected by both the chemistry and topography ...
Bacterial infection after surgeries is a serious problem that cannot be treated by traditional antib...
Investigating and understanding the response of microbes to various surfaces requires a versatile pa...
Nanostructured surfaces are called "promising" to control bacterial adhesion and biofilm formation. ...
Biofilms are complex aggregation of microorganisms grown on a solid substrate. They are characteri...
Initial bacterial adhesion to soft or hard surfaces in the human body and emergent properties leadin...
Bacterial infection of implants and prosthetic devices is one of the most common causes of implant f...
Billions of dollars are spent annually worldwide to combat the adverse effects of bacterial attachme...
Bacterial infection of implants and prosthetic devices is one of the most common causes of implant f...
Surface engineering is a promising strategy to limit or prevent the formation of biofilms. The use o...
Surface engineering is a promising strategy to limit or prevent the formation of biofilms. The use o...
textabstractBackground & Aim: The ability of Staphylococcus aureus to successfully colonize (a)bioti...
Hypothesis The nucleation of biofilms is known to be affected by both the chemistry and topography o...
Pseudomonas aeruginosa and Escherichia coli are able to form bacteria biofilms in the human body and...
Hypothesis: The nucleation of biofilms is known to be affected by both the chemistry and topography ...
Bacterial infection after surgeries is a serious problem that cannot be treated by traditional antib...
Investigating and understanding the response of microbes to various surfaces requires a versatile pa...
Nanostructured surfaces are called "promising" to control bacterial adhesion and biofilm formation. ...
Biofilms are complex aggregation of microorganisms grown on a solid substrate. They are characteri...
Initial bacterial adhesion to soft or hard surfaces in the human body and emergent properties leadin...
Bacterial infection of implants and prosthetic devices is one of the most common causes of implant f...
Billions of dollars are spent annually worldwide to combat the adverse effects of bacterial attachme...
Bacterial infection of implants and prosthetic devices is one of the most common causes of implant f...
Surface engineering is a promising strategy to limit or prevent the formation of biofilms. The use o...
Surface engineering is a promising strategy to limit or prevent the formation of biofilms. The use o...
textabstractBackground & Aim: The ability of Staphylococcus aureus to successfully colonize (a)bioti...
Hypothesis The nucleation of biofilms is known to be affected by both the chemistry and topography o...
Pseudomonas aeruginosa and Escherichia coli are able to form bacteria biofilms in the human body and...
Hypothesis: The nucleation of biofilms is known to be affected by both the chemistry and topography ...
Bacterial infection after surgeries is a serious problem that cannot be treated by traditional antib...