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Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface

This study evaluates the effects of the availability of exogenous BMP-7 on osteoblastic cells’ differentiation on a nanotextured Ti surface obtained by chemical etching (Nano-Ti). The MC3T3-E1 and UMR-106 osteoblastic cell lines were cultured for 5 and 7 days, respectively, on a Nano-Ti surface and...

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Autores principales: Zuardi, Leonardo Raphael, de Oliveira, Fabíola Singaretti, Fernandes, Roger Rodrigo, Gomes, Maria Paula Oliveira, Spriano, Silvia, Nanci, Antonio, de Oliveira, Paulo Tambasco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9496167/
https://www.ncbi.nlm.nih.gov/pubmed/36134940
http://dx.doi.org/10.3390/biomimetics7030136
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author Zuardi, Leonardo Raphael
de Oliveira, Fabíola Singaretti
Fernandes, Roger Rodrigo
Gomes, Maria Paula Oliveira
Spriano, Silvia
Nanci, Antonio
de Oliveira, Paulo Tambasco
author_facet Zuardi, Leonardo Raphael
de Oliveira, Fabíola Singaretti
Fernandes, Roger Rodrigo
Gomes, Maria Paula Oliveira
Spriano, Silvia
Nanci, Antonio
de Oliveira, Paulo Tambasco
author_sort Zuardi, Leonardo Raphael
collection PubMed
description This study evaluates the effects of the availability of exogenous BMP-7 on osteoblastic cells’ differentiation on a nanotextured Ti surface obtained by chemical etching (Nano-Ti). The MC3T3-E1 and UMR-106 osteoblastic cell lines were cultured for 5 and 7 days, respectively, on a Nano-Ti surface and on a control surface (Control-Ti) in an osteogenic medium supplemented with either 40 or 200 ng/mL recombinant mouse (rm) BMP-7. The results showed that MC3T3-E1 cells exhibited distinct responsiveness when exposed to each of the two rmBMP-7 concentrations, irrespective of the surface. Even with 40 ng/mL rmBMP-7, important osteogenic effects were noticed for Control-Ti in terms of cell proliferation potential; Runx2, Osx, Alp, Bsp, Opn, and Smad1 mRNA expression; and in situ ALP activity. For Nano-Ti, the effects were limited to higher Alp, Bsp, and Opn mRNA expression and in situ ALP activity. On both surfaces, the osteogenic potential of UMR-106 cultures remained unaltered with 40 ng/mL rmBMP-7, but it was significantly reduced when the cultures were exposed to the 200 ng/mL concentration. The availability of rmBMP-7 to pre-osteoblastic cells at the concentrations used alters the expression profile of osteoblast markers, indicative of the acquisition of a more advanced stage of osteoblastic differentiation. This occurs less pronouncedly on the nanotextured Ti and without reflecting in higher mineralized matrix production by differentiated osteoblasts on both surfaces.
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spelling pubmed-94961672022-09-23 Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface Zuardi, Leonardo Raphael de Oliveira, Fabíola Singaretti Fernandes, Roger Rodrigo Gomes, Maria Paula Oliveira Spriano, Silvia Nanci, Antonio de Oliveira, Paulo Tambasco Biomimetics (Basel) Article This study evaluates the effects of the availability of exogenous BMP-7 on osteoblastic cells’ differentiation on a nanotextured Ti surface obtained by chemical etching (Nano-Ti). The MC3T3-E1 and UMR-106 osteoblastic cell lines were cultured for 5 and 7 days, respectively, on a Nano-Ti surface and on a control surface (Control-Ti) in an osteogenic medium supplemented with either 40 or 200 ng/mL recombinant mouse (rm) BMP-7. The results showed that MC3T3-E1 cells exhibited distinct responsiveness when exposed to each of the two rmBMP-7 concentrations, irrespective of the surface. Even with 40 ng/mL rmBMP-7, important osteogenic effects were noticed for Control-Ti in terms of cell proliferation potential; Runx2, Osx, Alp, Bsp, Opn, and Smad1 mRNA expression; and in situ ALP activity. For Nano-Ti, the effects were limited to higher Alp, Bsp, and Opn mRNA expression and in situ ALP activity. On both surfaces, the osteogenic potential of UMR-106 cultures remained unaltered with 40 ng/mL rmBMP-7, but it was significantly reduced when the cultures were exposed to the 200 ng/mL concentration. The availability of rmBMP-7 to pre-osteoblastic cells at the concentrations used alters the expression profile of osteoblast markers, indicative of the acquisition of a more advanced stage of osteoblastic differentiation. This occurs less pronouncedly on the nanotextured Ti and without reflecting in higher mineralized matrix production by differentiated osteoblasts on both surfaces. MDPI 2022-09-16 /pmc/articles/PMC9496167/ /pubmed/36134940 http://dx.doi.org/10.3390/biomimetics7030136 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zuardi, Leonardo Raphael
de Oliveira, Fabíola Singaretti
Fernandes, Roger Rodrigo
Gomes, Maria Paula Oliveira
Spriano, Silvia
Nanci, Antonio
de Oliveira, Paulo Tambasco
Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title_full Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title_fullStr Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title_full_unstemmed Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title_short Effects of rmBMP-7 on Osteoblastic Cells Grown on a Nanostructured Titanium Surface
title_sort effects of rmbmp-7 on osteoblastic cells grown on a nanostructured titanium surface
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9496167/
https://www.ncbi.nlm.nih.gov/pubmed/36134940
http://dx.doi.org/10.3390/biomimetics7030136
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