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<i>In vitro</i> and <i>in vivo</i> degradation, biocompatibility and bone repair performance of strontium-doped montmorillonite coating on Mg–Ca alloy

Wenxin Sun, K.J. Yang, Yuhong Zou, Yande Ren, Lin Zhang, Fen Zhang, Rong‐Chang Zeng

2024Regenerative Biomaterials10 citationsDOIOpen Access PDF

Abstract

Abstract Poor bone growth remains a challenge for degradable bone implants. Montmorillonite and strontium were selected as the carrier and bone growth promoting elements to prepare strontium-doped montmorillonite coating on Mg–Ca alloy. The surface morphology and composition were characterized by SEM, EDS, XPS, FT-IR and XRD. The hydrogen evolution experiment and electrochemical test results showed that the Mg–Ca alloy coated with Sr-MMT coating possessed optimal corrosion resistance performance. Furthermore, in vitro studies on cell activity, ALP activity, and cell morphology confirmed that Sr-MMT coating had satisfactory biocompatibility, which can significantly avail the proliferation, differentiation, and adhesion of osteoblasts. Moreover, the results of the 90-day implantation experiment in rats indicated that, the preparation of Sr-MMT coating effectively advanced the biocompatibility and bone repair performance of Mg–Ca alloy. In addition, The Osteogenic ability of Sr-MMT coating may be due to the combined effect of the precipitation of Si4+ and Sr2+ in Sr-MMT coating and the dissolution of Mg2+ and Ca2+ during the degradation of Mg–Ca alloy. By using coating technology, this study provides a late-model strategy for biodegradable Mg alloys with good corrosion resistance, biocompatibility. This new material will bring more possibilities in bone repair.

Topics & Concepts

BiocompatibilityCoatingCorrosionStrontiumMaterials scienceAlloyChemical engineeringDissolutionMontmorilloniteNuclear chemistryMetallurgyChemistryComposite materialOrganic chemistryEngineeringMagnesium Alloys: Properties and ApplicationsBone Tissue Engineering MaterialsOrthopaedic implants and arthroplasty
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