Oxygen-sensitive nanoparticles reveal the spatiotemporal dynamics of oxygen reduction during magnesium implant biodegradation

Author:

Zeller-Plumhoff BeritORCID,Akkineni Ashwini RahulORCID,Helmholz Heike,Orlov DmytroORCID,Mosshammer MariaORCID,Kühl Michael,Willumeit-Römer Regine,Gelinsky Michael

Abstract

AbstractMagnesium (Mg) alloys are becoming increasingly important in the biomedical field as temporary bone implants. However, the biodegradation process of Mg alloys is highly complex and recent findings suggest that oxygen (O2) consumption is non-negligible. In this study, we give experimental proof of O2 consumption during Mg degradation under physiological conditions. Specifically, we study pure Mg, Mg–6 wt%Ag and Mg–5 wt%Gd in Hanks’ balanced salt solution and Dulbecco’s modified Eagle’s medium. We show that O2 consumption and hydrogen evolution are inversely correlated and that O2 concentrations remain below 7.5% in certain cases, which could have significant implications for bone healing.

Funder

Kiel Nano, Surface and Interface Science

Deutsche Forschungsgemeinschaft

Det Frie Forskningsråd

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Materials Science (miscellaneous),Chemistry (miscellaneous),Ceramics and Composites

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