3D Printing of Composite Scaffolds Based on Polycaprolactone Matrix Reinforced with Monticellite and Akermanite for Bone Repair; Mechanical and Biological Properties

Materialia(2024)

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摘要
This investigation examines the bioactivity and mechanical properties of composite scaffolds made from polycaprolactone (PCL) and augmented with akermanite (Ca2MgSi2O7) (AK) and monticellite (CaMgSiO4) (MNT) powders synthesized via the sol-gel method. The study systematically assesses the impact of varying proportions of the AK and MNT admixture, specifically at 10, 15, and 20 wt.% of the total composite weight. Morphological characterization of the powders is conducted. The composite scaffolds are fabricated using 3D printing. Scanning electron microscopy (SEM) images show interconnected and open-pore structures. Mechanical testing results indicate an increase in compressive strength facilitated by the AK and MNT bioceramics. The scaffold made of PCL and containing 15 wt.% nanopowders of AK/MNT exhibits superior compressive strength, measuring at 14.2 ± 0.84 MPa compared to other scaffolds. Bioactivity assessments confirm that the composite scaffolds can form apatite in simulated body fluid. The outcomes collectively demonstrate the effectiveness of the bioactive 3D-printed scaffolds, which have improved mechanical properties, confirming their suitability for use in cancellous bone repair.
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