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In vitro degradation assessment of calcium fluoride-doped hydroxyapatite coating prepared by pulsed laser deposition

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Abstract The surface properties of bone tissue engineered scaffolds are essential for cell attachment, proliferation, and differentiation. Calcium fluoride-doped hydroxyapatite (F-HA) coating prepared by pulsed laser deposition can rapidly form… Click to show full abstract

Abstract The surface properties of bone tissue engineered scaffolds are essential for cell attachment, proliferation, and differentiation. Calcium fluoride-doped hydroxyapatite (F-HA) coating prepared by pulsed laser deposition can rapidly form a nanopore structure through ion exchange in the simulated body fluid. Results showed that F-HA coating can accelerate the apatite-like deposition and improve the corrosion resistance of the coating. Results also revealed that F-HA coating can promote cell proliferation (p

Keywords: coating; fluoride doped; deposition; hydroxyapatite coating; calcium fluoride; doped hydroxyapatite

Journal Title: Surface and Coatings Technology
Year Published: 2021

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