Bio-fabrication of peptide-modified alginate scaffolds: Printability, mechanical stability and neurite outgrowth assessments

Author:

Sarker M.D.,Naghieh Saman,McInnes Adam D.,Ning Liqun,Schreyer David J.,Chen Xiongbiao

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Elsevier BV

Subject

Computer Science Applications,Biomedical Engineering,Biotechnology

Reference32 articles.

1. 3D biofabrication of vascular networks for tissue regeneration: a report on recent advances;Sarker;J. Pharm. Anal.,2018

2. Combinational processing of 3D printing and electrospinning of hierarchical poly(lactic acid)/gelatin-forsterite scaffolds as a biocomposite: mechanical and biological assessment;Naghieh;Mater. Des.,2017

3. Combination of PLA micro-fibers and PCL-gelatin nano-fibers for development of bone tissue engineering scaffolds;Naghieh;Int. J. Swarm Intell. Evol. Comput.,2017

4. Numerical investigation of the mechanical properties of the additive manufactured bone scaffolds fabricated by FDM: the effect of layer penetration and post-heating;Naghieh;J. Mech. Behav. Biomed. Mater.,2016

5. Fused deposition modeling and fabrication of a three-dimensional model in maxillofacial reconstruction;Naghieh;Regen. Reconstr. Restor.,2016

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