Cargando…

Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study

Magnesium (Mg)-based implants are highly attractive for the orthopedic field and may replace titanium (Ti) as support for fracture healing. To determine the implant–bone interaction in different bony regions, we implanted Mg-based alloy ZX00 (Mg < 0.5 Zn < 0.5 Ca, in wt%) and Ti-screws into th...

Descripción completa

Detalles Bibliográficos
Autores principales: Marek, Romy, Ćwieka, Hanna, Donohue, Nicholas, Holweg, Patrick, Moosmann, Julian, Beckmann, Felix, Brcic, Iva, Schwarze, Uwe Yacine, Iskhakova, Kamila, Chaabane, Marwa, Sefa, Sandra, Zeller-Plumhoff, Berit, Weinberg, Annelie-Martina, Willumeit-Römer, Regine, Sommer, Nicole Gabriele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9845522/
https://www.ncbi.nlm.nih.gov/pubmed/36683753
http://dx.doi.org/10.1093/rb/rbac077
_version_ 1784870918304038912
author Marek, Romy
Ćwieka, Hanna
Donohue, Nicholas
Holweg, Patrick
Moosmann, Julian
Beckmann, Felix
Brcic, Iva
Schwarze, Uwe Yacine
Iskhakova, Kamila
Chaabane, Marwa
Sefa, Sandra
Zeller-Plumhoff, Berit
Weinberg, Annelie-Martina
Willumeit-Römer, Regine
Sommer, Nicole Gabriele
author_facet Marek, Romy
Ćwieka, Hanna
Donohue, Nicholas
Holweg, Patrick
Moosmann, Julian
Beckmann, Felix
Brcic, Iva
Schwarze, Uwe Yacine
Iskhakova, Kamila
Chaabane, Marwa
Sefa, Sandra
Zeller-Plumhoff, Berit
Weinberg, Annelie-Martina
Willumeit-Römer, Regine
Sommer, Nicole Gabriele
author_sort Marek, Romy
collection PubMed
description Magnesium (Mg)-based implants are highly attractive for the orthopedic field and may replace titanium (Ti) as support for fracture healing. To determine the implant–bone interaction in different bony regions, we implanted Mg-based alloy ZX00 (Mg < 0.5 Zn < 0.5 Ca, in wt%) and Ti-screws into the distal epiphysis and distal metaphysis of sheep tibiae. The implant degradation and osseointegration were assessed in vivo and ex vivo after 4, 6 and 12 weeks, using a combination of clinical computed tomography, medium-resolution micro computed tomography (µCT) and high-resolution synchrotron radiation µCT (SRµCT). Implant volume loss, gas formation and bone growth were evaluated for both implantation sites and each bone region independently. Additionally, histological analysis of bone growth was performed on embedded hard-tissue samples. We demonstrate that in all cases, the degradation rate of ZX00-implants ranges between 0.23 and 0.75 mm/year. The highest degradation rates were found in the epiphysis. Bone-to-implant contact varied between the time points and bone types for both materials. Mostly, bone-volume-to-total-volume was higher around Ti-implants. However, we found an increased cortical thickness around the ZX00-screws when compared with the Ti-screws. Our results showed the suitability of ZX00-screws for implantation into the distal meta- and epiphysis.
format Online
Article
Text
id pubmed-9845522
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-98455222023-01-19 Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study Marek, Romy Ćwieka, Hanna Donohue, Nicholas Holweg, Patrick Moosmann, Julian Beckmann, Felix Brcic, Iva Schwarze, Uwe Yacine Iskhakova, Kamila Chaabane, Marwa Sefa, Sandra Zeller-Plumhoff, Berit Weinberg, Annelie-Martina Willumeit-Römer, Regine Sommer, Nicole Gabriele Regen Biomater Research Article Magnesium (Mg)-based implants are highly attractive for the orthopedic field and may replace titanium (Ti) as support for fracture healing. To determine the implant–bone interaction in different bony regions, we implanted Mg-based alloy ZX00 (Mg < 0.5 Zn < 0.5 Ca, in wt%) and Ti-screws into the distal epiphysis and distal metaphysis of sheep tibiae. The implant degradation and osseointegration were assessed in vivo and ex vivo after 4, 6 and 12 weeks, using a combination of clinical computed tomography, medium-resolution micro computed tomography (µCT) and high-resolution synchrotron radiation µCT (SRµCT). Implant volume loss, gas formation and bone growth were evaluated for both implantation sites and each bone region independently. Additionally, histological analysis of bone growth was performed on embedded hard-tissue samples. We demonstrate that in all cases, the degradation rate of ZX00-implants ranges between 0.23 and 0.75 mm/year. The highest degradation rates were found in the epiphysis. Bone-to-implant contact varied between the time points and bone types for both materials. Mostly, bone-volume-to-total-volume was higher around Ti-implants. However, we found an increased cortical thickness around the ZX00-screws when compared with the Ti-screws. Our results showed the suitability of ZX00-screws for implantation into the distal meta- and epiphysis. Oxford University Press 2022-10-18 /pmc/articles/PMC9845522/ /pubmed/36683753 http://dx.doi.org/10.1093/rb/rbac077 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Marek, Romy
Ćwieka, Hanna
Donohue, Nicholas
Holweg, Patrick
Moosmann, Julian
Beckmann, Felix
Brcic, Iva
Schwarze, Uwe Yacine
Iskhakova, Kamila
Chaabane, Marwa
Sefa, Sandra
Zeller-Plumhoff, Berit
Weinberg, Annelie-Martina
Willumeit-Römer, Regine
Sommer, Nicole Gabriele
Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title_full Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title_fullStr Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title_full_unstemmed Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title_short Degradation behavior and osseointegration of Mg–Zn–Ca screws in different bone regions of growing sheep: a pilot study
title_sort degradation behavior and osseointegration of mg–zn–ca screws in different bone regions of growing sheep: a pilot study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9845522/
https://www.ncbi.nlm.nih.gov/pubmed/36683753
http://dx.doi.org/10.1093/rb/rbac077
work_keys_str_mv AT marekromy degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT cwiekahanna degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT donohuenicholas degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT holwegpatrick degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT moosmannjulian degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT beckmannfelix degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT brciciva degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT schwarzeuweyacine degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT iskhakovakamila degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT chaabanemarwa degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT sefasandra degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT zellerplumhoffberit degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT weinberganneliemartina degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT willumeitromerregine degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy
AT sommernicolegabriele degradationbehaviorandosseointegrationofmgzncascrewsindifferentboneregionsofgrowingsheepapilotstudy