Abstract
Bacterial adhesion of medical indwelling devices shortens their service life and brings about infections in patients. The combination of hydrophilic and antibacterial modifications can not only kill the bacteria in contact with the surface, but also avoid the adhesion of dead bacteria. From this view, with a self-made quaternary ammonium salt and a zwitterion as the modifiers, a modified silicone rubber, SR-g-(DMAPS-co-QA), was preparedviarandom co-grafting. The static water angle test and antibacterial assays proved the enhancement of both the hydrophilicity and antibacterial activity. In addition, compared with the unmodified silicone rubber, after 7 days of co-cultivation inE. colisuspension, SR-g-(DMAPS-co-QA) demonstrated good resistance to biofilm formation. Furthermore, to simulate the real situation, its antibacterial effect in dynamic flow condition was measured, confirming that SR-g-(DMAPS-co-QA) still maintained good antibacterial performance after a 48 hour cyclic flow ofE. colibacterial suspension.
Cite
CITATION STYLE
Ding, K., Wang, Y., Liu, S., Wang, S., & Mi, J. (2021). Preparation of medical hydrophilic and antibacterial silicone rubberviasurface modification. RSC Advances, 11(63), 39950–39957. https://doi.org/10.1039/d1ra06260c
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