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A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper

Copper (Cu) could be suitable to create anti-infective implants based on Titanium (Ti), for example by incorporating Cu into the implant surface using plasma immersion ion implantation (Cu-PIII). The cytotoxicity of Cu might be circumvented by an additional cell-adhesive plasma polymerized allylamin...

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Autores principales: Walschus, Uwe, Hoene, Andreas, Patrzyk, Maciej, Lucke, Silke, Finke, Birgit, Polak, Martin, Lukowski, Gerold, Bader, Rainer, Zietz, Carmen, Podbielski, Andreas, Nebe, J. Barbara, Schlosser, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618281/
https://www.ncbi.nlm.nih.gov/pubmed/28726761
http://dx.doi.org/10.3390/jfb8030030
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author Walschus, Uwe
Hoene, Andreas
Patrzyk, Maciej
Lucke, Silke
Finke, Birgit
Polak, Martin
Lukowski, Gerold
Bader, Rainer
Zietz, Carmen
Podbielski, Andreas
Nebe, J. Barbara
Schlosser, Michael
author_facet Walschus, Uwe
Hoene, Andreas
Patrzyk, Maciej
Lucke, Silke
Finke, Birgit
Polak, Martin
Lukowski, Gerold
Bader, Rainer
Zietz, Carmen
Podbielski, Andreas
Nebe, J. Barbara
Schlosser, Michael
author_sort Walschus, Uwe
collection PubMed
description Copper (Cu) could be suitable to create anti-infective implants based on Titanium (Ti), for example by incorporating Cu into the implant surface using plasma immersion ion implantation (Cu-PIII). The cytotoxicity of Cu might be circumvented by an additional cell-adhesive plasma polymerized allylamine film (PPAAm). Thus, this study aimed to examine in vivo local inflammatory reactions for Ti6Al4V implants treated with Cu-PIII (Ti-Cu), alone or with an additional PPAAm film (Ti-Cu-PPAAm), compared to untreated implants (Ti). Successful Cu-PIII and PPAAm treatment was confirmed with X-ray Photoelectron Spectroscopy. Storage of Ti-Cu and Ti-Cu-PPAAm samples in double-distilled water for five days revealed a reduction of Cu release by PPAAm. Subsequently, Ti, Ti-Cu and Ti-Cu-PPAAm samples were simultaneously implanted into the neck musculature of 24 rats. After 7, 14 and 56 days, peri-implant tissue was retrieved from 8 rats/day for morphometric immunohistochemistry of different inflammatory cells. On day 56, Ti-Cu induced significantly stronger reactions compared to Ti (tissue macrophages, antigen-presenting cells, T lymphocytes) and to Ti-Cu-PPAAm (tissue macrophages, T lymphocytes, mast cells). The response for Ti-Cu-PPAAm was comparable with Ti. In conclusion, PPAAm reduced the inflammatory reactions caused by Cu-PIII. Combining both plasma processes could be useful to create antibacterial and tissue compatible Ti-based implants.
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spelling pubmed-56182812017-09-29 A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper Walschus, Uwe Hoene, Andreas Patrzyk, Maciej Lucke, Silke Finke, Birgit Polak, Martin Lukowski, Gerold Bader, Rainer Zietz, Carmen Podbielski, Andreas Nebe, J. Barbara Schlosser, Michael J Funct Biomater Article Copper (Cu) could be suitable to create anti-infective implants based on Titanium (Ti), for example by incorporating Cu into the implant surface using plasma immersion ion implantation (Cu-PIII). The cytotoxicity of Cu might be circumvented by an additional cell-adhesive plasma polymerized allylamine film (PPAAm). Thus, this study aimed to examine in vivo local inflammatory reactions for Ti6Al4V implants treated with Cu-PIII (Ti-Cu), alone or with an additional PPAAm film (Ti-Cu-PPAAm), compared to untreated implants (Ti). Successful Cu-PIII and PPAAm treatment was confirmed with X-ray Photoelectron Spectroscopy. Storage of Ti-Cu and Ti-Cu-PPAAm samples in double-distilled water for five days revealed a reduction of Cu release by PPAAm. Subsequently, Ti, Ti-Cu and Ti-Cu-PPAAm samples were simultaneously implanted into the neck musculature of 24 rats. After 7, 14 and 56 days, peri-implant tissue was retrieved from 8 rats/day for morphometric immunohistochemistry of different inflammatory cells. On day 56, Ti-Cu induced significantly stronger reactions compared to Ti (tissue macrophages, antigen-presenting cells, T lymphocytes) and to Ti-Cu-PPAAm (tissue macrophages, T lymphocytes, mast cells). The response for Ti-Cu-PPAAm was comparable with Ti. In conclusion, PPAAm reduced the inflammatory reactions caused by Cu-PIII. Combining both plasma processes could be useful to create antibacterial and tissue compatible Ti-based implants. MDPI 2017-07-20 /pmc/articles/PMC5618281/ /pubmed/28726761 http://dx.doi.org/10.3390/jfb8030030 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Walschus, Uwe
Hoene, Andreas
Patrzyk, Maciej
Lucke, Silke
Finke, Birgit
Polak, Martin
Lukowski, Gerold
Bader, Rainer
Zietz, Carmen
Podbielski, Andreas
Nebe, J. Barbara
Schlosser, Michael
A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title_full A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title_fullStr A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title_full_unstemmed A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title_short A Cell-Adhesive Plasma Polymerized Allylamine Coating Reduces the In Vivo Inflammatory Response Induced by Ti6Al4V Modified with Plasma Immersion Ion Implantation of Copper
title_sort cell-adhesive plasma polymerized allylamine coating reduces the in vivo inflammatory response induced by ti6al4v modified with plasma immersion ion implantation of copper
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5618281/
https://www.ncbi.nlm.nih.gov/pubmed/28726761
http://dx.doi.org/10.3390/jfb8030030
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