Impact and biocompatibility studies on Mg 2+ ‐substituted Apatite‐derived 3D porous scaffolds for hard tissue engineering
Author:
Affiliation:
1. Department of Nanoscience and Technology Bharathiar University Coimbatore Tamil Nadu India
2. Euromed Engineering Faculty Euromed Research Center, Euromed University of Fes, Eco‐Campus, Campus UEMF Fes Morocco
Funder
Indian Council of Medical Research
Publisher
Wiley
Subject
Materials Chemistry,Marketing,Condensed Matter Physics,Ceramics and Composites
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/ijac.13299
Reference30 articles.
1. Scaffold-based regeneration of skeletal tissues to meet clinical challenges
2. Fabrication of porous hydroxyapatite‐Gelatin Composite Scaffolds for Bone Tissue Engineering;Narbat MK;Iran Biomed J,2006
3. Porous bodies of hydroxyapatite produced by a combination of the gel-casting and polymer sponge methods
4. Development of Porous Hydroxyapatite Scaffolds
5. Effect of microporosity on scaffolds for bone tissue engineering
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1. Polymer Sponge Replication Technology Derived Strontium-Substituted Apatite (Sr-HAP) Porous Scaffolds for Bone Tissue Engineering;Biomedical Materials & Devices;2022-08-31
2. Fabrication and biological evaluation of three-dimensional (3D) Mg substituted bi-phasic calcium phosphate porous scaffolds for hard tissue engineering;RSC Advances;2022
3. Fabrication of three dimensional bioactive Sr 2+ substituted apatite scaffolds by gel‐casting technique for hard tissue regeneration;Journal of Tissue Engineering and Regenerative Medicine;2021-04-16
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