Molecular Dynamics Insights into Water-Parylene C Interface: Relevance of Oxygen Plasma Treatment for Biocompatibility.

Monika Golda-Cepa, Waldemar Kulig, Lukasz Cwiklik, Andrzej Kotarba

Journal: ACS applied materials & interfaces 2019;9(19):16685-16693

PMID: 28459527

Abstract

Solid-water interfaces play a vital role in biomaterials science because they provide a natural playground for most biochemical reactions and physiological processes. In the study, fully atomistic molecular dynamics simulations were performed to investigate interactions between water molecules and several surfaces modeling for unmodified and modified parylene C surfaces. The introduction of -OH, -CHO, and -COOH to the surface and alterations in their coverage significantly influence the energetics of interactions between water molecules and the polymer surface. The theoretical studies were complemented with experimental measurements of contact angle, surface free energy, and imaging of osteoblast cells adhesion. Both MD simulations and experiments demonstrate that the optimal interface, in terms of biocompatibility, is obtained when 60% of native -Cl groups of parylene C surface is exchanged for -OH groups. By exploring idealized models of bare and functionalized parylene C, we obtained a unique insight into molecular interactions at the water-polymer interface. The calculated values of interaction energy components (electrostatic and dispersive) correspond well with the experimentally determined values of surface free energy components (polar and dispersive), revealing their optimal ratio for cells adhesion. The results are discussed in the context of controllable tuning and functionalization of implant polymeric coating toward improved biocompatibility.

Address: Faculty of Chemistry, Jagiellonian University , Ingardena 3, 30-060 Krakow, Poland.; Department of Physics, University of Helsinki , P.O. Box 64, FI-00014 Helsinki, Finland.; Department of Physics, Tampere University of Technology , P.O. Box 692, FI- 33101 Tampere, Finland.; J. Heyrovský Institute of Physical Chemistry, Czech Academy of Sciences , Dolejškova 3, Prague 18223, Czech Republic.; Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences , Flemingovo nám. 2, Prague 16610, Czech Republic.

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