Biodegradable Mg alloys for orthopedic implants – A review

The last decade has seen a significant growth in the market for alloys used for implants, especially for those intended for orthopedic implants. Research into biodegradable magnesium-based alloys has made great strides in this period, so huge progress has been made in their use in the medical indust...

Full description

Bibliographic Details
Main Authors: Violeta Tsakiris, Christu Tardei, Florentina Marilena Clicinschi
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2021-11-01
Series:Journal of Magnesium and Alloys
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2213956721001699
_version_ 1827271209161588736
author Violeta Tsakiris
Christu Tardei
Florentina Marilena Clicinschi
author_facet Violeta Tsakiris
Christu Tardei
Florentina Marilena Clicinschi
author_sort Violeta Tsakiris
collection DOAJ
description The last decade has seen a significant growth in the market for alloys used for implants, especially for those intended for orthopedic implants. Research into biodegradable magnesium-based alloys has made great strides in this period, so huge progress has been made in their use in the medical industry. The important factors that led to the intensification of research in this regard, were social but also economic, wanting to improve the quality of life, by reducing the use of conventionally permanent metallic implants (stainless steel, cobalt-based alloys, and titanium alloys) which involve the second implant removal surgery and other undesirable effects (stress shielding and metal ion releases), with a negative impact on the emotional and physical condition of patients, and by significantly reducing the costs for both the patient and the health system in the field of orthopedics. This paper refers to the impact and importance of biodegradable Mg alloys, reviewing the beginning of their development, the significant characteristics that make them so desirable for such applications (orthopedic implants) but also the characteristics that must be modulated (corrosion rate and mechanical properties) to arrive at the ideal product for the targeted application. It highlights, in detail, the mechanism and aspects related to the corrosion behaviour of Mg alloys, electrochemical characterization techniques / methods, as well as strategies to improve the corrosion behaviour and mechanical properties of these types of biodegradable alloys. The means of optimization, the category and the effect of the alloying elements, the design criteria, the requirements that the implants of biodegradable alloys Mg-based must meet and the aspects related to their efficiency are also presented. Finally, the potential applications in the specialized clinics, as well as the final products currently used and made by important prestigious companies in the world are approached.
first_indexed 2024-04-11T18:07:09Z
format Article
id doaj.art-0e0c773b97d04a4b82b0423d96f1a961
institution Directory Open Access Journal
issn 2213-9567
language English
last_indexed 2025-03-22T05:33:41Z
publishDate 2021-11-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Journal of Magnesium and Alloys
spelling doaj.art-0e0c773b97d04a4b82b0423d96f1a9612024-04-26T19:59:57ZengKeAi Communications Co., Ltd.Journal of Magnesium and Alloys2213-95672021-11-019618841905Biodegradable Mg alloys for orthopedic implants – A reviewVioleta Tsakiris0Christu Tardei1Florentina Marilena Clicinschi2Corresponding author.; Department of Metallic, Composite and Polymeric Materials, National Institute for Research and Development in Electrical Engineering (ICPE – Advanced Researches), 313 Splaiul Unirii, District 3, 030138 Bucharest, RomaniaDepartment of Metallic, Composite and Polymeric Materials, National Institute for Research and Development in Electrical Engineering (ICPE – Advanced Researches), 313 Splaiul Unirii, District 3, 030138 Bucharest, RomaniaDepartment of Metallic, Composite and Polymeric Materials, National Institute for Research and Development in Electrical Engineering (ICPE – Advanced Researches), 313 Splaiul Unirii, District 3, 030138 Bucharest, RomaniaThe last decade has seen a significant growth in the market for alloys used for implants, especially for those intended for orthopedic implants. Research into biodegradable magnesium-based alloys has made great strides in this period, so huge progress has been made in their use in the medical industry. The important factors that led to the intensification of research in this regard, were social but also economic, wanting to improve the quality of life, by reducing the use of conventionally permanent metallic implants (stainless steel, cobalt-based alloys, and titanium alloys) which involve the second implant removal surgery and other undesirable effects (stress shielding and metal ion releases), with a negative impact on the emotional and physical condition of patients, and by significantly reducing the costs for both the patient and the health system in the field of orthopedics. This paper refers to the impact and importance of biodegradable Mg alloys, reviewing the beginning of their development, the significant characteristics that make them so desirable for such applications (orthopedic implants) but also the characteristics that must be modulated (corrosion rate and mechanical properties) to arrive at the ideal product for the targeted application. It highlights, in detail, the mechanism and aspects related to the corrosion behaviour of Mg alloys, electrochemical characterization techniques / methods, as well as strategies to improve the corrosion behaviour and mechanical properties of these types of biodegradable alloys. The means of optimization, the category and the effect of the alloying elements, the design criteria, the requirements that the implants of biodegradable alloys Mg-based must meet and the aspects related to their efficiency are also presented. Finally, the potential applications in the specialized clinics, as well as the final products currently used and made by important prestigious companies in the world are approached.http://www.sciencedirect.com/science/article/pii/S2213956721001699Mg alloysBiodegradableOrthopedic implantsCorrosionDegradationBiomedical applications
spellingShingle Violeta Tsakiris
Christu Tardei
Florentina Marilena Clicinschi
Biodegradable Mg alloys for orthopedic implants – A review
Journal of Magnesium and Alloys
Mg alloys
Biodegradable
Orthopedic implants
Corrosion
Degradation
Biomedical applications
title Biodegradable Mg alloys for orthopedic implants – A review
title_full Biodegradable Mg alloys for orthopedic implants – A review
title_fullStr Biodegradable Mg alloys for orthopedic implants – A review
title_full_unstemmed Biodegradable Mg alloys for orthopedic implants – A review
title_short Biodegradable Mg alloys for orthopedic implants – A review
title_sort biodegradable mg alloys for orthopedic implants a review
topic Mg alloys
Biodegradable
Orthopedic implants
Corrosion
Degradation
Biomedical applications
url http://www.sciencedirect.com/science/article/pii/S2213956721001699
work_keys_str_mv AT violetatsakiris biodegradablemgalloysfororthopedicimplantsareview
AT christutardei biodegradablemgalloysfororthopedicimplantsareview
AT florentinamarilenaclicinschi biodegradablemgalloysfororthopedicimplantsareview