A comprehensive review on hydrogel-based bio-ink development for tissue engineering scaffolds using 3D printing
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Elsevier BV
Reference176 articles.
1. Polysaccharide-based hydrogels: properties, advantages, challenges, and optimization methods for applications in regenerative medicine;Kozani;Int J Polym Mater Polym Biomater,2022
2. Bioprinted 3D primary liver tissues allow assessment of organ-level response to clinical drug induced toxicity in vitro;Nguyen;PLoS ONE,2016
3. Enhanced out-of-plane compressive strength and energy absorption of 3D printed square and hexagonal honeycombs with variable-thickness cell edges;Duan;Extrem Mech Lett,2018
4. Printability and shape fidelity of bioinks in 3D bioprinting;Schwab;Chem Rev,2020
5. 3D printed hierarchical honeycombs with shape integrity under large compressive deformations;Chen;Mater Des,2018
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