Atmospheric Pressure Plasma Polymerized Oxazoline-Based Thin Films-Antibacterial Properties and Cytocompatibility Performance.
Pavel St'ahelVěra MazánkováKlára TomečkováPetra MatouškováAntonín BrablecLubomír ProkešJana JurmanováVilma BuršíkováRoman PřibylMarian LehockyPetr HumpolíčekKadir OzaltinDavid TrunecPublished in: Polymers (2019)
Polyoxazolines are a new promising class of polymers for biomedical applications. Antibiofouling polyoxazoline coatings can suppress bacterial colonization of medical devices, which can cause infections to patients. However, the creation of oxazoline-based films using conventional methods is difficult. This study presents a new way to produce plasma polymerized oxazoline-based films with antibiofouling properties and good biocompatibility. The films were created via plasma deposition from 2-methyl-2-oxazoline vapors in nitrogen atmospheric pressure dielectric barrier discharge. Diverse film properties were achieved by increasing the substrate temperature at the deposition. The physical and chemical properties of plasma polymerized polyoxazoline films were studied by SEM, EDX, FTIR, AFM, depth-sensing indentation technique, and surface energy measurement. After tuning of the deposition parameters, films with a capacity to resist bacterial biofilm formation were achieved. Deposited films also promote cell viability.
Keyphrases
- room temperature
- biofilm formation
- carbon nanotubes
- end stage renal disease
- pseudomonas aeruginosa
- staphylococcus aureus
- ejection fraction
- escherichia coli
- particulate matter
- chronic kidney disease
- candida albicans
- physical activity
- gold nanoparticles
- air pollution
- high resolution
- mass spectrometry
- patient reported outcomes
- anti inflammatory
- amino acid
- patient reported