Bacterial fouling on surfaces significantly increases the resistance of bacteria toward antibiotics, which leads to medical complications and a corresponding financial burden. Here, we report on a general and robust technique for facile modification of various surfaces with different antibacterial agents. Our approach in this study was inspired by the strong adhesion of mussel adhesion proteins (MAPs) to many types of surfaces, including metals, polymers, and inorganic materials. Thus, glass and polymeric slides were dip-coated with dopamine, as a MAP mimic, and the resulting surfaces were characterized. The reactivity of dopamine-coated surfaces toward nucleophilic addition was then confirmed by reacting them with fluorescent probes contai...
The growing number of patient morbidity related to nosocomial infections has placed an importance on...
Biomaterials-associated infections (BAIs) are related to bacterial colonization on medical devices, ...
Dopamine is a small molecule that mimics the adhesive component (L-DOPA) of marine mussels with a ca...
Bacterial fouling on surfaces significantly increases the resistance of bacteria toward antibiotics,...
Bacterial fouling on surfaces significantly increases the resistance of bacteria toward antibiotics,...
Bioactive surfaces that can prevent bacterial infections are of great interest since device-related ...
International audienceSelf-polymerized dopamine was used to form a thin layer onto stainless steel (...
Mussel-inspired dopamine chemistry has increasingly been used for surface modification due to its si...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
The development of novel approaches to prevent biomaterial-associated infections are in great demand...
Bacterial colonization of indwelling devices is very often a prelude for biofilm formation and infec...
The rapid accumulation of dead bacteria or protein on a bactericidal surface can reduce the effectiv...
The synthesis of biocompatible polymers for coating applications has gained significant attention in...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
International audiencePrevention of bacterial adhesion and biofilm formation on the surfaces of mate...
The growing number of patient morbidity related to nosocomial infections has placed an importance on...
Biomaterials-associated infections (BAIs) are related to bacterial colonization on medical devices, ...
Dopamine is a small molecule that mimics the adhesive component (L-DOPA) of marine mussels with a ca...
Bacterial fouling on surfaces significantly increases the resistance of bacteria toward antibiotics,...
Bacterial fouling on surfaces significantly increases the resistance of bacteria toward antibiotics,...
Bioactive surfaces that can prevent bacterial infections are of great interest since device-related ...
International audienceSelf-polymerized dopamine was used to form a thin layer onto stainless steel (...
Mussel-inspired dopamine chemistry has increasingly been used for surface modification due to its si...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
The development of novel approaches to prevent biomaterial-associated infections are in great demand...
Bacterial colonization of indwelling devices is very often a prelude for biofilm formation and infec...
The rapid accumulation of dead bacteria or protein on a bactericidal surface can reduce the effectiv...
The synthesis of biocompatible polymers for coating applications has gained significant attention in...
We present a versatile route for promoting cell adhesion and viability on various non-wetting surfac...
International audiencePrevention of bacterial adhesion and biofilm formation on the surfaces of mate...
The growing number of patient morbidity related to nosocomial infections has placed an importance on...
Biomaterials-associated infections (BAIs) are related to bacterial colonization on medical devices, ...
Dopamine is a small molecule that mimics the adhesive component (L-DOPA) of marine mussels with a ca...