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An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report

Chemical composition and physical parameters of the implant surface, such as roughness, regulate the cellular response leading to implant bone osseointegration. Possible implant surface modifications include anodization or the plasma electrolytic oxidation (PEO) treatment process that produces a thi...

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Autores principales: Hadzik, Jakub, Jurczyszyn, Kamil, Gębarowski, Tomasz, Trytek, Andrzej, Gedrange, Tomasz, Kozakiewicz, Marcin, Dominiak, Marzena, Kubasiewicz-Ross, Paweł, Trzcionka-Szajna, Anna, Szajna, Ernest, Simka, Wojciech
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9958761/
https://www.ncbi.nlm.nih.gov/pubmed/36835015
http://dx.doi.org/10.3390/ijms24043603
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author Hadzik, Jakub
Jurczyszyn, Kamil
Gębarowski, Tomasz
Trytek, Andrzej
Gedrange, Tomasz
Kozakiewicz, Marcin
Dominiak, Marzena
Kubasiewicz-Ross, Paweł
Trzcionka-Szajna, Anna
Szajna, Ernest
Simka, Wojciech
author_facet Hadzik, Jakub
Jurczyszyn, Kamil
Gębarowski, Tomasz
Trytek, Andrzej
Gedrange, Tomasz
Kozakiewicz, Marcin
Dominiak, Marzena
Kubasiewicz-Ross, Paweł
Trzcionka-Szajna, Anna
Szajna, Ernest
Simka, Wojciech
author_sort Hadzik, Jakub
collection PubMed
description Chemical composition and physical parameters of the implant surface, such as roughness, regulate the cellular response leading to implant bone osseointegration. Possible implant surface modifications include anodization or the plasma electrolytic oxidation (PEO) treatment process that produces a thick and dense oxide coating superior to normal anodic oxidation. Experimental modifications with Plasma Electrolytic Oxidation (PEO) titanium and titanium alloy Ti6Al4V plates and PEO additionally treated with low-pressure oxygen plasma (PEO-S) were used in this study to evaluate their physical and chemical properties. Cytotoxicity of experimental titanium samples as well as cell adhesion to their surface were assessed using normal human dermal fibroblasts (NHDF) or L929 cell line. Moreover, the surface roughness, fractal dimension analysis, and texture analysis were calculated. Samples after surface treatment have substantially improved properties compared to the reference SLA (sandblasted and acid-etched) surface. The surface roughness (Sa) was 0.59–2.38 µm, and none of the tested surfaces had cytotoxic effect on NHDF and L929 cell lines. A greater cell growth of NHDF was observed on the tested PEO and PEO-S samples compared to reference SLA sample titanium.
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spelling pubmed-99587612023-02-26 An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report Hadzik, Jakub Jurczyszyn, Kamil Gębarowski, Tomasz Trytek, Andrzej Gedrange, Tomasz Kozakiewicz, Marcin Dominiak, Marzena Kubasiewicz-Ross, Paweł Trzcionka-Szajna, Anna Szajna, Ernest Simka, Wojciech Int J Mol Sci Article Chemical composition and physical parameters of the implant surface, such as roughness, regulate the cellular response leading to implant bone osseointegration. Possible implant surface modifications include anodization or the plasma electrolytic oxidation (PEO) treatment process that produces a thick and dense oxide coating superior to normal anodic oxidation. Experimental modifications with Plasma Electrolytic Oxidation (PEO) titanium and titanium alloy Ti6Al4V plates and PEO additionally treated with low-pressure oxygen plasma (PEO-S) were used in this study to evaluate their physical and chemical properties. Cytotoxicity of experimental titanium samples as well as cell adhesion to their surface were assessed using normal human dermal fibroblasts (NHDF) or L929 cell line. Moreover, the surface roughness, fractal dimension analysis, and texture analysis were calculated. Samples after surface treatment have substantially improved properties compared to the reference SLA (sandblasted and acid-etched) surface. The surface roughness (Sa) was 0.59–2.38 µm, and none of the tested surfaces had cytotoxic effect on NHDF and L929 cell lines. A greater cell growth of NHDF was observed on the tested PEO and PEO-S samples compared to reference SLA sample titanium. MDPI 2023-02-10 /pmc/articles/PMC9958761/ /pubmed/36835015 http://dx.doi.org/10.3390/ijms24043603 Text en © 2023 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
Hadzik, Jakub
Jurczyszyn, Kamil
Gębarowski, Tomasz
Trytek, Andrzej
Gedrange, Tomasz
Kozakiewicz, Marcin
Dominiak, Marzena
Kubasiewicz-Ross, Paweł
Trzcionka-Szajna, Anna
Szajna, Ernest
Simka, Wojciech
An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title_full An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title_fullStr An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title_full_unstemmed An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title_short An Experimental Anodized and Low-Pressure Oxygen Plasma-Treated Titanium Dental Implant Surface—Preliminary Report
title_sort experimental anodized and low-pressure oxygen plasma-treated titanium dental implant surface—preliminary report
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9958761/
https://www.ncbi.nlm.nih.gov/pubmed/36835015
http://dx.doi.org/10.3390/ijms24043603
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