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Merck
CN
  • Improved osteoblast cell affinity on plasma-modified 3-D extruded PCL scaffolds.

Improved osteoblast cell affinity on plasma-modified 3-D extruded PCL scaffolds.

Acta biomaterialia (2013-01-15)
M Domingos, F Intranuovo, A Gloria, R Gristina, L Ambrosio, P J Bártolo, P Favia
摘要

Cellular adhesion and proliferation inside three-dimensional synthetic scaffolds represent a major challenge in tissue engineering. Besides the surface chemistry of the polymers, it is well recognized that scaffold internal architecture, namely pore size/shape and interconnectivity, has a strong effect on the biological response of cells. This study reports for the first time how polycaprolactone (PCL) scaffolds with controlled micro-architecture can be effectively produced via bioextrusion and used to enhance the penetration of plasma deposited species. Low-pressure nitrogen-based coatings were employed to augment cell adhesion and proliferation without altering the mechanical properties of the structures. X-ray photoelectron spectroscopy carried out on different sections of the scaffolds indicates a uniform distribution of nitrogen-containing groups throughout the entire porous structure. In vitro biological assays confirm that plasma deposition sensitively promotes the activity of Saos-2 osteoblast cells, leading to a homogeneous colonization of the PCL scaffolds.

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Sigma-Aldrich
聚已酸内酯, average Mn 80,000
Sigma-Aldrich
聚已酸内酯, average Mw ~14,000, average Mn ~10,000 by GPC
Sigma-Aldrich
聚已酸内酯, average Mn 45,000