Cell culture is usually performed in 2D polymer surfaces; however, several studies are conducted with the aim to screen functional coating molecules to find substrates more suitable for cell adhesion and proliferation. The aim of this manuscript is to compare the cell adhesion and cytoskeleton organization of different cell types on different surfaces. Human primary fibroblasts, chondrocytes and osteoblasts isolated from patients undergoing surgery were seeded on polystyrene, poly-d-lysine-coated glass and titanium carbide slides and left to grow for several days. Then their cytoskeleton was analyzed, both by staining cells with phalloidin, which highlights actin fibers, and using Atomic Force Microscopy. We also monitored the production of Fibroblast Growth Factor-2, Bone Morphogenetic Protein-2 and Osteocalcin, using ELISA, and we highlighted production of Collagen type I in fibroblasts and osteoblasts and Collagen type II in chondrocytes by immunofluorescences. Fibroblasts, chondrocytes and osteoblasts showed both an improved proliferative activity and a good adhesion ability when cultured on titanium carbide slides, compared to polystyrene and poly-d-lysine-coated glass. In conclusion, we propose titanium carbide as a suitable surface to cultivate cells such as fibroblasts, chondrocytes and osteoblasts, allowing the preservation of their differentiated state and good adhesion properties.

Nanostructured tic layer is highly suitable surface for adhesion, proliferation and spreading of cells / Lopreiato, M.; Mariano, A.; Copcchiola, R.; Longo, G.; Dalla Vedova, P.; Scandurra, R.; Scotto d'Abusco, A.. - In: CONDENSED MATTER. - ISSN 2410-3896. - 5:2(2020), p. 29. [10.3390/condmat5020029]

Nanostructured tic layer is highly suitable surface for adhesion, proliferation and spreading of cells

Mariano, A.;Scandurra, R.;Scotto d'Abusco, A.
2020

Abstract

Cell culture is usually performed in 2D polymer surfaces; however, several studies are conducted with the aim to screen functional coating molecules to find substrates more suitable for cell adhesion and proliferation. The aim of this manuscript is to compare the cell adhesion and cytoskeleton organization of different cell types on different surfaces. Human primary fibroblasts, chondrocytes and osteoblasts isolated from patients undergoing surgery were seeded on polystyrene, poly-d-lysine-coated glass and titanium carbide slides and left to grow for several days. Then their cytoskeleton was analyzed, both by staining cells with phalloidin, which highlights actin fibers, and using Atomic Force Microscopy. We also monitored the production of Fibroblast Growth Factor-2, Bone Morphogenetic Protein-2 and Osteocalcin, using ELISA, and we highlighted production of Collagen type I in fibroblasts and osteoblasts and Collagen type II in chondrocytes by immunofluorescences. Fibroblasts, chondrocytes and osteoblasts showed both an improved proliferative activity and a good adhesion ability when cultured on titanium carbide slides, compared to polystyrene and poly-d-lysine-coated glass. In conclusion, we propose titanium carbide as a suitable surface to cultivate cells such as fibroblasts, chondrocytes and osteoblasts, allowing the preservation of their differentiated state and good adhesion properties.
2020
cell culture; atomic force microscopy; nanostructured titanium carbide
01 Pubblicazione su rivista::01a Articolo in rivista
Nanostructured tic layer is highly suitable surface for adhesion, proliferation and spreading of cells / Lopreiato, M.; Mariano, A.; Copcchiola, R.; Longo, G.; Dalla Vedova, P.; Scandurra, R.; Scotto d'Abusco, A.. - In: CONDENSED MATTER. - ISSN 2410-3896. - 5:2(2020), p. 29. [10.3390/condmat5020029]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1386818
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