Abstract Because of their good performance, including biocompatibility and mechanical properties, polyurethanes (PUs) are widely used in medical devices. However, undesired compatibility troubles, including thrombus, inflammation, and hyperplasia, still limit the applications of PUs. In this study, copper‐mediated polyurethane (PU‐Cu) materials with enzyme‐like catalysis were prepared. The PU‐Cu materials effectively catalysed the nitric oxide (NO) released from endogenous NO donors because of the glutathione peroxidase (GPx)‐like function of copper ion. The PU‐Cu materials were respectively evaluated via platelet adhesion and endothelial cell (EC), smooth muscle cell (SMC), and macrophage (MA) cultures. Scanning electron microscopy results...
A coating that can generate nitric oxide (NO) for surface modification of cardiovascular stents with...
Antimicrobial copper nanoparticles (CuNPs) were electrosynthetized and applied to the controlled imp...
Polycarbonateurethanes (PCU) and polyetherurethanes (PEU) are used for medical devices, however thei...
Polyurethanes are widely used in the manufacturing of biomedical catheters and other blood-contactin...
Nitric oxide (NO) generating surfaces are potentially promising for improving haemocompatibility of ...
There is a need for biomimetic materials for use in blood-contacting devices. Blood contacting surfa...
Polymeric materials that continuously release nitric oxide (NO) can inhibit platelet activation and ...
International audienceCopper is an essential trace element required for human life, and is involved ...
In this study, a wound dressing based on polyurethane (PU) blended with copper sulphate nanofibers w...
With the rapidly advancing field of nanotechnology having an impact in several areas interfacing lif...
The purpose of this study was to develop a process to achieve biodegradable chitooligosaccharide-bas...
Antimicrobial copper nanoparticles (CuNPs) were electrosynthetized and applied to the controlled imp...
Many polyurethanes (PUs) are blood-contacting materials due to their good mechanical properties, fat...
Material-independent surface chemistry by polydopamine and other phenolic networks is of great influ...
Material-independent surface chemistry by polydopamine and other phenolic networks is of great influ...
A coating that can generate nitric oxide (NO) for surface modification of cardiovascular stents with...
Antimicrobial copper nanoparticles (CuNPs) were electrosynthetized and applied to the controlled imp...
Polycarbonateurethanes (PCU) and polyetherurethanes (PEU) are used for medical devices, however thei...
Polyurethanes are widely used in the manufacturing of biomedical catheters and other blood-contactin...
Nitric oxide (NO) generating surfaces are potentially promising for improving haemocompatibility of ...
There is a need for biomimetic materials for use in blood-contacting devices. Blood contacting surfa...
Polymeric materials that continuously release nitric oxide (NO) can inhibit platelet activation and ...
International audienceCopper is an essential trace element required for human life, and is involved ...
In this study, a wound dressing based on polyurethane (PU) blended with copper sulphate nanofibers w...
With the rapidly advancing field of nanotechnology having an impact in several areas interfacing lif...
The purpose of this study was to develop a process to achieve biodegradable chitooligosaccharide-bas...
Antimicrobial copper nanoparticles (CuNPs) were electrosynthetized and applied to the controlled imp...
Many polyurethanes (PUs) are blood-contacting materials due to their good mechanical properties, fat...
Material-independent surface chemistry by polydopamine and other phenolic networks is of great influ...
Material-independent surface chemistry by polydopamine and other phenolic networks is of great influ...
A coating that can generate nitric oxide (NO) for surface modification of cardiovascular stents with...
Antimicrobial copper nanoparticles (CuNPs) were electrosynthetized and applied to the controlled imp...
Polycarbonateurethanes (PCU) and polyetherurethanes (PEU) are used for medical devices, however thei...