Abstract:
:Nanocrystalline diamond (NCD) films and nanoparticulate diamond powder (DP) are the two main representatives of diamond at the nanoscale. This study was designed to investigate the suitability of these biomaterials as cell growth supports and to determine surface characteristic properties best suited to cell attachment and proliferation. Surface topography, chemical termination and wetting properties of NCD- and DP-coated borosilicate glass substrates were correlated to attachment, proliferation and differentially regulated gene expression of human renal epithelial cells (HK-2 cell line) cultured on these surfaces. Hydrogen-terminated NCD (NCD-H) surfaces were shown to inhibit cell attachment, which indicates that the lack of functional polar groups prevents adherent cells from settling on a surface, whether nanostructured or not. In contrast to NCD-H, oxygen-terminated NCD (NCD-O) as well as DP surfaces demonstrated improved cell attachment, as compared to borosilicate glass, which is a commonly used material for cell growth supports. NCD-O not only revealed an increased cell attachment, but also a markedly increased proliferation rate. Finally, none of the investigated surface modifications appeared to cause adverse cellular reactions or markedly alter cellular phenotype.
journal_name
Biomaterialsjournal_title
Biomaterialsauthors
Lechleitner T,Klauser F,Seppi T,Lechner J,Jennings P,Perco P,Mayer B,Steinmüller-Nethl D,Preiner J,Hinterdorfer P,Hermann M,Bertel E,Pfaller K,Pfaller Wdoi
10.1016/j.biomaterials.2008.07.023subject
Has Abstractpub_date
2008-11-01 00:00:00pages
4275-84issue
32eissn
0142-9612issn
1878-5905pii
S0142-9612(08)00508-5journal_volume
29pub_type
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