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Surface nanocavitation of titanium modulates macrophage activity

BACKGROUND: Nanoscale surface modifications are widely touted to improve the biocompatibility of medically relevant materials. Immune cells, such as macrophages, play a critical role in the initial healing events following implantation. METHODS: To understand the response of macrophages to nanotopog...

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Autores principales: Ariganello, Marianne B, Guadarrama Bello, Dainelys, Rodriguez-Contreras, Alejandra, Sadeghi, Shayan, Isola, Gaetano, Variola, Fabio, Nanci, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287524/
https://www.ncbi.nlm.nih.gov/pubmed/30584301
http://dx.doi.org/10.2147/IJN.S185436
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author Ariganello, Marianne B
Guadarrama Bello, Dainelys
Rodriguez-Contreras, Alejandra
Sadeghi, Shayan
Isola, Gaetano
Variola, Fabio
Nanci, Antonio
author_facet Ariganello, Marianne B
Guadarrama Bello, Dainelys
Rodriguez-Contreras, Alejandra
Sadeghi, Shayan
Isola, Gaetano
Variola, Fabio
Nanci, Antonio
author_sort Ariganello, Marianne B
collection PubMed
description BACKGROUND: Nanoscale surface modifications are widely touted to improve the biocompatibility of medically relevant materials. Immune cells, such as macrophages, play a critical role in the initial healing events following implantation. METHODS: To understand the response of macrophages to nanotopography better, we exposed U937-derived macrophages to a distinctive mesoporous titanium surface (TiNano) produced by a process of simple chemical nanocavitation, and to mechanically polished titanium (TiPolished) and glass coverslip (Glass) surfaces as controls. Cell numbers and morphology were evaluated. Osteopontin expression and that of the proinflammatory SPARC protein and its stabilin 1 receptor were analyzed. Release of inflammation-associated cytokines and chemokines was also measured. RESULTS: Compared to the two control surfaces, there were fewer U937 cells on TiNano, and these exhibited a more rounded morphology with long filopodia. The cells showed areas of punctate actin distribution, indicating formation of podosomes. Of the three proteins examined, only osteopontin’s immunofluorescence signal was clearly reduced. Irrespective of the substrate, the cytokine assay revealed important variations in expression levels of the multiple molecules analyzed and downregulation in a number of chemokines by the TiNano surface. CONCLUSION: These results indicate that macrophages sense and respond to the physicochemical cueing generated by the nanocavitated surface, triggering cellular and molecular changes consistent with lesser inflammatory propensity. Given the previously reported beneficial outcome of this mesoporous surface on osteogenic activity, it could be presumed that modulation of the macrophagic response it elicits may also contribute to initial bone-integration events.
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spelling pubmed-62875242018-12-24 Surface nanocavitation of titanium modulates macrophage activity Ariganello, Marianne B Guadarrama Bello, Dainelys Rodriguez-Contreras, Alejandra Sadeghi, Shayan Isola, Gaetano Variola, Fabio Nanci, Antonio Int J Nanomedicine Original Research BACKGROUND: Nanoscale surface modifications are widely touted to improve the biocompatibility of medically relevant materials. Immune cells, such as macrophages, play a critical role in the initial healing events following implantation. METHODS: To understand the response of macrophages to nanotopography better, we exposed U937-derived macrophages to a distinctive mesoporous titanium surface (TiNano) produced by a process of simple chemical nanocavitation, and to mechanically polished titanium (TiPolished) and glass coverslip (Glass) surfaces as controls. Cell numbers and morphology were evaluated. Osteopontin expression and that of the proinflammatory SPARC protein and its stabilin 1 receptor were analyzed. Release of inflammation-associated cytokines and chemokines was also measured. RESULTS: Compared to the two control surfaces, there were fewer U937 cells on TiNano, and these exhibited a more rounded morphology with long filopodia. The cells showed areas of punctate actin distribution, indicating formation of podosomes. Of the three proteins examined, only osteopontin’s immunofluorescence signal was clearly reduced. Irrespective of the substrate, the cytokine assay revealed important variations in expression levels of the multiple molecules analyzed and downregulation in a number of chemokines by the TiNano surface. CONCLUSION: These results indicate that macrophages sense and respond to the physicochemical cueing generated by the nanocavitated surface, triggering cellular and molecular changes consistent with lesser inflammatory propensity. Given the previously reported beneficial outcome of this mesoporous surface on osteogenic activity, it could be presumed that modulation of the macrophagic response it elicits may also contribute to initial bone-integration events. Dove Medical Press 2018-12-05 /pmc/articles/PMC6287524/ /pubmed/30584301 http://dx.doi.org/10.2147/IJN.S185436 Text en © 2018 Ariganello et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Ariganello, Marianne B
Guadarrama Bello, Dainelys
Rodriguez-Contreras, Alejandra
Sadeghi, Shayan
Isola, Gaetano
Variola, Fabio
Nanci, Antonio
Surface nanocavitation of titanium modulates macrophage activity
title Surface nanocavitation of titanium modulates macrophage activity
title_full Surface nanocavitation of titanium modulates macrophage activity
title_fullStr Surface nanocavitation of titanium modulates macrophage activity
title_full_unstemmed Surface nanocavitation of titanium modulates macrophage activity
title_short Surface nanocavitation of titanium modulates macrophage activity
title_sort surface nanocavitation of titanium modulates macrophage activity
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287524/
https://www.ncbi.nlm.nih.gov/pubmed/30584301
http://dx.doi.org/10.2147/IJN.S185436
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