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Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/20.500.12008/28676 Cómo citar
Título: In Vitro assessment of the functional dynamics of titanium with surface coating of hydroxyapatite nanoparticles
Autor: Cavalcanti de Lima, J.H.
Matos, P.C.
Gouvê, C.V. D.de
Carvalho, W.
Calvo-Guirado, J.L.
Aragoneses, J.M.
Pérez-Díaz, Leticia
Gehrke, S.A.
Tipo: Artículo
Palabras clave: Implants surface, Mesenchymal cells, Titanium implants
Fecha de publicación: 2019
Resumen: Manipulation of implant surface characteristics constitutes a promising strategy for improving cell growth and tissue response on a variety of materials with different surface topographies. Mesenchymal progenitor cells with a capacity to respond to titanium surface stimuli and differentiate into osteoblasts were used to perform comparative tests between two different implant topographies, including their functional interaction with pre-osteoblasts directly seeded onto the implants. Functional analysis of nanostructured implant surfaces was performed by in vitro assay analysis. The machined surface of titanium implants (mach group) was used as a control and compared with a nanoparticle HA activated surface implant (nano group), developed by the deposition of pure crystalline hydroxyapatite. Cell culture on the nano group surface resulted in higher cell adhesion and cultured osteoblast viability compared with the mach group. Scanning electron microscope (SEM) images revealed a stable interaction, indicated by the presence of focal cell adhesion formation. These results together with positive mineralization assays showed the nano group to be an excellent scaffold for bone-implant integration.
Descripción: This article belongs to the Special Issue Clinical Implants and the Biocompatibility of Biodegradable Biomaterials
Editorial: MDPI
EN: Materials, 2019, 12(5): 840
DOI: 10.3390/ma12050840
ISSN: 1996-1944
Citación: Cavalcanti de Lima, J, Matos, P, Gouvê, C, y otros "In Vitro assessment of the functional dynamics of titanium with surface coating of hydroxyapatite nanoparticles". Materials. [en línea] 2019, 12(5): 840. 14 h. DOI: 10.3390/ma12050840
Licencia: Licencia Creative Commons Atribución (CC - By 4.0)
Aparece en las colecciones: Publicaciones académicas y científicas - Facultad de Ciencias

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