4.2 Article

In vivo investigation of open-pored magnesium scaffolds LAE442 with different coatings in an open wedge defect

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SAGE PUBLICATIONS LTD
DOI: 10.1177/22808000221142679

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Magnesium alloy; porous scaffold; biodegradation; coating; osseointegration

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The study evaluated the in vivo behavior of LAE442 magnesium alloy scaffolds with two different coatings in a partial weight-bearing rabbit tibia defect model. Both coatings showed good bone substitute properties, with the MgF2 coating promoting better bridging of the osteotomy gap and more bone-scaffold contacts. However, issues with inhomogeneous degradation and gas accumulation were observed.
The magnesium alloy LAE442 showed promising results as a bone substitute in numerous studies in non-weight bearing bone defects. This study aimed to investigate the in vivo behavior of wedge-shaped open-pored LAE442 scaffolds modified with two different coatings (magnesium fluoride (MgF2, group 1)) or magnesium fluoride/calcium phosphate (MgF2/CaP, group 2)) in a partial weight-bearing rabbit tibia defect model. The implantation of the scaffolds was performed as an open wedge corrective osteotomy in the tibia of 40 rabbits and followed for observation periods of 6, 12, 24, and 36 weeks. Radiological and microcomputed tomographic examinations were performed in vivo. X-ray microscopic, histological, histomorphometric, and SEM/EDS analyses were performed at the end of each time period. mu CT measurements and X-ray microscopy showed a slight decrease in volume and density of the scaffolds of both coatings. Histologically, endosteal and periosteal callus formation with good bridging and stabilization of the osteotomy gap and ingrowth of bone into the scaffold was seen. The MgF2 coating favored better bridging of the osteotomy gap and more bone-scaffold contacts, especially at later examination time points. Overall, the scaffolds of both coatings met the requirement to withstand the loads after an open wedge corrective osteotomy of the proximal rabbit tibia. However, in addition to the inhomogeneous degradation behavior of individual scaffolds, an accumulation of gas appeared, so the scaffold material should be revised again regarding size dimension and composition.

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