Cargando…

Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures

Due to the high biotolerance, favourable mechanical properties, and osseointegration ability, titanium is the basic biomaterial used in maxillofacial surgery. The passive layer of titanium dioxide on the surface of the implant effectively provides anticorrosive properties, but it can be damaged, res...

Descripción completa

Detalles Bibliográficos
Autores principales: Borys, Jan, Maciejczyk, Mateusz, Antonowicz, Bożena, Krętowski, Adam, Waszkiel, Danuta, Bortnik, Piotr, Czarniecka-Bargłowska, Katarzyna, Kocisz, Magdalena, Szulimowska, Julita, Czajkowski, Marek, Waszkiewicz, Napoleon, Zalewska, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6022263/
https://www.ncbi.nlm.nih.gov/pubmed/30013720
http://dx.doi.org/10.1155/2018/3714725
_version_ 1783335643326185472
author Borys, Jan
Maciejczyk, Mateusz
Antonowicz, Bożena
Krętowski, Adam
Waszkiel, Danuta
Bortnik, Piotr
Czarniecka-Bargłowska, Katarzyna
Kocisz, Magdalena
Szulimowska, Julita
Czajkowski, Marek
Waszkiewicz, Napoleon
Zalewska, Anna
author_facet Borys, Jan
Maciejczyk, Mateusz
Antonowicz, Bożena
Krętowski, Adam
Waszkiel, Danuta
Bortnik, Piotr
Czarniecka-Bargłowska, Katarzyna
Kocisz, Magdalena
Szulimowska, Julita
Czajkowski, Marek
Waszkiewicz, Napoleon
Zalewska, Anna
author_sort Borys, Jan
collection PubMed
description Due to the high biotolerance, favourable mechanical properties, and osseointegration ability, titanium is the basic biomaterial used in maxillofacial surgery. The passive layer of titanium dioxide on the surface of the implant effectively provides anticorrosive properties, but it can be damaged, resulting in the release of titanium ions to the surrounding tissues. The aim of our work was to evaluate the influence of Ti6Al4V titanium alloy on redox balance and oxidative damage in the periosteum surrounding the titanium miniplates and screws as well as in plasma and erythrocytes of patients with mandibular fractures. The study included 31 previously implanted patients (aged 21–29) treated for mandibular fractures and 31 healthy controls. We have demonstrated increased activity/concentration of antioxidants both in the mandibular periosteum and plasma/erythrocytes of patients with titanium mandibular fixations. However, increased concentrations of the products of oxidative protein and lipid modifications were only observed in the periosteum of the study group patients. The correlation between the products of oxidative modification of the mandible and antioxidants in plasma/erythrocytes suggests a relationship between the increase of oxidative damage at the implantation site and central redox disorders in patients with titanium miniplates and screws.
format Online
Article
Text
id pubmed-6022263
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-60222632018-07-16 Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures Borys, Jan Maciejczyk, Mateusz Antonowicz, Bożena Krętowski, Adam Waszkiel, Danuta Bortnik, Piotr Czarniecka-Bargłowska, Katarzyna Kocisz, Magdalena Szulimowska, Julita Czajkowski, Marek Waszkiewicz, Napoleon Zalewska, Anna Oxid Med Cell Longev Clinical Study Due to the high biotolerance, favourable mechanical properties, and osseointegration ability, titanium is the basic biomaterial used in maxillofacial surgery. The passive layer of titanium dioxide on the surface of the implant effectively provides anticorrosive properties, but it can be damaged, resulting in the release of titanium ions to the surrounding tissues. The aim of our work was to evaluate the influence of Ti6Al4V titanium alloy on redox balance and oxidative damage in the periosteum surrounding the titanium miniplates and screws as well as in plasma and erythrocytes of patients with mandibular fractures. The study included 31 previously implanted patients (aged 21–29) treated for mandibular fractures and 31 healthy controls. We have demonstrated increased activity/concentration of antioxidants both in the mandibular periosteum and plasma/erythrocytes of patients with titanium mandibular fixations. However, increased concentrations of the products of oxidative protein and lipid modifications were only observed in the periosteum of the study group patients. The correlation between the products of oxidative modification of the mandible and antioxidants in plasma/erythrocytes suggests a relationship between the increase of oxidative damage at the implantation site and central redox disorders in patients with titanium miniplates and screws. Hindawi 2018-06-14 /pmc/articles/PMC6022263/ /pubmed/30013720 http://dx.doi.org/10.1155/2018/3714725 Text en Copyright © 2018 Jan Borys et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Clinical Study
Borys, Jan
Maciejczyk, Mateusz
Antonowicz, Bożena
Krętowski, Adam
Waszkiel, Danuta
Bortnik, Piotr
Czarniecka-Bargłowska, Katarzyna
Kocisz, Magdalena
Szulimowska, Julita
Czajkowski, Marek
Waszkiewicz, Napoleon
Zalewska, Anna
Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title_full Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title_fullStr Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title_full_unstemmed Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title_short Exposure to Ti4Al4V Titanium Alloy Leads to Redox Abnormalities, Oxidative Stress, and Oxidative Damage in Patients Treated for Mandible Fractures
title_sort exposure to ti4al4v titanium alloy leads to redox abnormalities, oxidative stress, and oxidative damage in patients treated for mandible fractures
topic Clinical Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6022263/
https://www.ncbi.nlm.nih.gov/pubmed/30013720
http://dx.doi.org/10.1155/2018/3714725
work_keys_str_mv AT borysjan exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT maciejczykmateusz exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT antonowiczbozena exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT kretowskiadam exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT waszkieldanuta exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT bortnikpiotr exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT czarnieckabargłowskakatarzyna exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT kociszmagdalena exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT szulimowskajulita exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT czajkowskimarek exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT waszkiewicznapoleon exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures
AT zalewskaanna exposuretoti4al4vtitaniumalloyleadstoredoxabnormalitiesoxidativestressandoxidativedamageinpatientstreatedformandiblefractures