Počet záznamů: 1  

In Vitro and In Silico Studies of Functionalized Polyurethane Surfaces toward Understanding Biologically Relevant Interactions

  1. 1.
    SYSNO ASEP0578939
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevIn Vitro and In Silico Studies of Functionalized Polyurethane Surfaces toward Understanding Biologically Relevant Interactions
    Tvůrce(i) Chytrosz-Wrobel, P. (PL)
    Golda-Cepa, M. (PL)
    Drozdz, K. (PL)
    Rysz, J. (PL)
    Kubisiak, P. (PL)
    Kulig, W. (FI)
    Brzychczy-Wloch, M. (PL)
    Cwiklik, Lukasz (UFCH-W) RID, ORCID
    Kotarba, A. (PL)
    Zdroj.dok.ACS BIOMATERIALS SCIENCE & ENGINEERING. - : American Chemical Society - ISSN 2373-9878
    Roč. 9, č. 11 (2023), s. 6112-6122
    Poč.str.11 s.
    Jazyk dok.eng - angličtina
    Země vyd.US - Spojené státy americké
    Klíč. slovanitrogen plasma treatment ; biomedical applications ; biomaterials ; crystallinity ; polymers ; protein ; chain ; polyurethane ; oxygen plasma ; biocompatibility ; bacteria adhesion ; moleculardynamics
    Vědní obor RIVCF - Fyzikální chemie a teoretická chemie
    Obor OECDPhysical chemistry
    CEPGF22-27317K GA ČR - Grantová agentura ČR
    Způsob publikováníOpen access
    Institucionální podporaUFCH-W - RVO:61388955
    UT WOS001097970400001
    EID SCOPUS85176973914
    DOI10.1021/acsbiomaterials.3c01367
    AnotaceThe solid-aqueous boundary formed upon biomaterial implantation provides a playground for most biochemical reactions and physiological processes involved in implant-host interactions. Therefore, for biomaterial development, optimization, and application, it is essential to understand the biomaterial-water interface in depth. In this study, oxygen plasma-functionalized polyurethane surfaces that can be successfully utilized in contact with the tissue of the respiratory system were prepared and investigated. Through experiments, the influence of plasma treatment on the physicochemical properties of polyurethane was investigated by atomic force microscopy, attenuated total reflection infrared spectroscopy, differential thermal analysis, X-ray photoelectron spectroscopy, secondary ion mass spectrometry, and contact angle measurements, supplemented with biological tests using the A549 cell line and two bacteria strains (Staphylococcus aureus and Pseudomonas aeruginosa). The molecular interpretation of the experimental findings was achieved by molecular dynamics simulations employing newly developed, fully atomistic models of unmodified and plasma-functionalized polyurethane materials to characterize the polyurethane-water interfaces at the nanoscale in detail. The experimentally obtained polar and dispersive surface free energies were consistent with the calculated free energies, verifying the adequacy of the developed models. A 20% substitution of the polymeric chain termini by their oxidized variants was observed in the experimentally obtained plasma-modified polyurethane surface, indicating the surface saturation with oxygen-containing functional groups.
    PracovištěÚstav fyzikální chemie J.Heyrovského
    KontaktMichaela Knapová, michaela.knapova@jh-inst.cas.cz, Tel.: 266 053 196
    Rok sběru2024
    Elektronická adresahttps://hdl.handle.net/11104/0347848
Počet záznamů: 1  

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