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Microporous Hydroxyapatite Ceramic Composites as Tissue Engineering Scaffolds: An Experimental and Computational Study
Authors:Satish Kanhed  Shikha Awasthi  Swati Midha  Jitin Nair  Ambreen Nisar  Anup Kumar Patel  Aditi Pandey  Rajeev Sharma  Sneha Goel  Anish Upadhyaya  Sourabh Ghosh  Kantesh Balani
Affiliation:1. Biomaterials Processing and Characterization Laboratory, Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, Kanpur‐208016, Uttar Pradesh, India;2. Powder Metallurgy Laboratory, Department of Materials Science and Engineering, Indian Institute of Technology Kanpur, Kanpur‐208016, Uttar Pradesh, India;3. Department of Textile Technology, Indian Institute of Technology Delhi, New Delhi ? 110016, India;4. Department of Abrasive and Additive Manufacturing, University West, Trollh?ttan‐46186, Sweden
Abstract:
Bone‐tissue engineering mandates the development of multi‐functional bioactive porous hydroxyapatite (HAp) scaffolds. Herein, microwave sintered HAp/ZnO and HAp/Ag composite scaffolds with ≈5–19% porosity are developed using 0–30 vol% graphite as a porogen. The mechanical properties of the porous scaffold are analyzed in detail, revealing that even being more porous, the reinforcement of ZnO (9% porosity, hardness of 2.8 GPa, and toughness of 3.5 MPa.m1/2) has shown to have better hardness and fracture toughness when compared to Ag (5% porosity, hardness of 1.6 GPa, and toughness of 2.6 MPa.m1/2). The flexural strength obtained experimentally are complemented with a finite‐element technique that adopts microstructural features in visualizing the effect of porosity on stress distribution. The antibacterial efficacy and cytocompatibility of these composites are validated by increased metabolic activity and conspicuous cell‐matrix interactions. The anticipation of the results reveal that HAp/ZnO (9% porosity) and HAp/Ag (5% porosity) composites can be used as a potential multi‐functional bone implant scaffolds.
Keywords:Antibacterial  Cytocompatibility  Diametrical Compression Test  Hydroxyapatite  Object‐Oriented Finite Element Modeling (OOF2)  Porosity  Silver  Zinc Oxide
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