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Morphological alterations of T24 cells on flat and nanotubular TiO2 surfaces.
Imani, Roghayeh; Kabaso, Doron; Erdani Kreft, Mateja; Gongadze, Ekaterina; Penic, Samo; Elersic, Kristina; Kos, Andrej; Veranic, Peter; Zorec, Robert; Iglic, Ales.
Affiliation
  • Imani R; Faculty of Electrical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Croat Med J ; 53(6): 577-85, 2012 Dec.
Article in En | MEDLINE | ID: mdl-23275323
ABSTRACT

AIM:

To investigate morphological alterations of malignant cancer cells (T24) of urothelial origin seeded on flat titanium (Ti) and nanotubular TiO(2) (titanium dioxide) nanostructures.

METHODS:

Using anodization method, TiO(2) surfaces composed of vertically aligned nanotubes of 50-100 nm diameters were produced. The flat Ti surface was used as a reference. The alteration in the morphology of cancer cells was evaluated using scanning electron microscopy (SEM). A computational model, based on the theory of membrane elasticity, was constructed to shed light on the biophysical mechanisms responsible for the observed changes in the contact area of adhesion.

RESULTS:

Large diameter TiO(2) nanotubes exhibited a significantly smaller contact area of adhesion (P<0.0001) and had more membrane protrusions (eg, microvilli and intercellular membrane nanotubes) than on flat Ti surface. Numerical membrane dynamics simulations revealed that the low adhesion energy per unit area would hinder the cell spreading on the large diameter TiO(2) nanotubular surface, thus explaining the small contact area.

CONCLUSION:

The reduction in the cell contact area in the case of large diameter TiO(2) nanotube surface, which does not enable formation of the large enough number of the focal adhesion points, prevents spreading of urothelial cells.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Titanium / Biocompatible Materials / Urologic Neoplasms / Nanotubes / Tissue Scaffolds Limits: Humans Language: En Journal: Croat Med J Journal subject: MEDICINA Year: 2012 Document type: Article Affiliation country: Slovenia Publication country: CROACIA / CROATIA / CROÁCIA / HR

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Titanium / Biocompatible Materials / Urologic Neoplasms / Nanotubes / Tissue Scaffolds Limits: Humans Language: En Journal: Croat Med J Journal subject: MEDICINA Year: 2012 Document type: Article Affiliation country: Slovenia Publication country: CROACIA / CROATIA / CROÁCIA / HR