Expanded polytetrafluoroethylene (ePTFE) was chemically modified to retard the growth of Staphylococcus aureus bacteria. This was accomplished by microwave plasma reactions in the presence of maleic anhydride (MA) to create acid functional groups on ePTFE surfaces, followed by esterification reactions with 200 and 600 molecular weight linear polyethylene glycol (PEG). Such surfaces were utilized for further reactions with penicillin (PEN) through etherification reactions to create anti-microbial surfaces. These reactions resulted in surface morphological changes, and spectroscopic analysis using attenuated total reflectance Fourier transform infrared spectroscopy (ATR FT-IR) revealed the formation of ester linkages resulting from reactions ...
Since octafluoropentyl methacrylate is an antifouling polymer, surface modification of polyether eth...
Alginic acid coated polyethylene films were examined in terms of surface properties and bacteriostat...
Recent advances in developments of anticoagulant, antifouling, and antimicrobial polymeric surfaces ...
Expanded polytetrafluoroethylene (ePTFE) was chemically modified to retard the growth of Staphylococ...
The broad spectrum antibiotic, ampicillin (AM), was reacted to expanded poly (tetrafluoroethylene) (...
Recent studies identified and established a platform of polymer surface modifications allowing the a...
Surface reactions were performed on polypropylene (PP) surfaces to retard the simultaneous growth of...
Limiting factor of PE application in healthcare is high susceptibility of polyethylene towards bacte...
Surface coatings of pretreated poly(fluoroethylene propylene) (FEP) films by UV-induced graft copoly...
This dissertation describes the design, synthesis, and development of biocompatible poly(tetrafluoro...
These studies illustrate synthetic paths to covalently attach T1 and Φ11 bacteriophages (phages) to ...
Weak adhesion between the metal-based antibacterial coatings and polymer substrates limits their cli...
International audienceThymol, an antibacterial agent was used for the preparation of a methacrylic m...
These studies illustrate synthetic paths to covalently attach T1 and Φ11 bacteriophages (phages) to ...
Bacterial contamination is one of the biggest drawbacks of implanted biomaterials, which may cause n...
Since octafluoropentyl methacrylate is an antifouling polymer, surface modification of polyether eth...
Alginic acid coated polyethylene films were examined in terms of surface properties and bacteriostat...
Recent advances in developments of anticoagulant, antifouling, and antimicrobial polymeric surfaces ...
Expanded polytetrafluoroethylene (ePTFE) was chemically modified to retard the growth of Staphylococ...
The broad spectrum antibiotic, ampicillin (AM), was reacted to expanded poly (tetrafluoroethylene) (...
Recent studies identified and established a platform of polymer surface modifications allowing the a...
Surface reactions were performed on polypropylene (PP) surfaces to retard the simultaneous growth of...
Limiting factor of PE application in healthcare is high susceptibility of polyethylene towards bacte...
Surface coatings of pretreated poly(fluoroethylene propylene) (FEP) films by UV-induced graft copoly...
This dissertation describes the design, synthesis, and development of biocompatible poly(tetrafluoro...
These studies illustrate synthetic paths to covalently attach T1 and Φ11 bacteriophages (phages) to ...
Weak adhesion between the metal-based antibacterial coatings and polymer substrates limits their cli...
International audienceThymol, an antibacterial agent was used for the preparation of a methacrylic m...
These studies illustrate synthetic paths to covalently attach T1 and Φ11 bacteriophages (phages) to ...
Bacterial contamination is one of the biggest drawbacks of implanted biomaterials, which may cause n...
Since octafluoropentyl methacrylate is an antifouling polymer, surface modification of polyether eth...
Alginic acid coated polyethylene films were examined in terms of surface properties and bacteriostat...
Recent advances in developments of anticoagulant, antifouling, and antimicrobial polymeric surfaces ...