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- W3082575256 abstract "3D printed bio-composite is a great requirement for the development of biocompatible and functional bone graft substitute. This technology consists of six main steps: imaging, strategy design, material selection, cell selection, printing construct, and implantation. To fabricate bone regenerative biocomposites, synthetic polymer/marine bioactive component scaffolds have been created through a coating and blending technique. The alginate and fish collagen can support biocompatibility of synthetic polymers and deliver growth factors or bioactive substances or regulate dosage. Bone morphogenetic protein, fucoidan, phlorotannin, and umbilical cord serum have been reported for the 3D printed poly e-caprolactone scaffold coating process, with alginate and/or fish collagen for bone tissue engineering. Hydrogel based 3D printing scaffolds may contain collagenous matrix components, which are favorable to mineralization and vascularization, and include cell survival during and after printing for generating bone graft scaffolds with interconnected pores." @default.
- W3082575256 created "2020-09-08" @default.
- W3082575256 creator A5030426085 @default.
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- W3082575256 date "2020-08-11" @default.
- W3082575256 modified "2023-10-14" @default.
- W3082575256 title "3D Printed Marine Biomaterials Composites for Bone Tissue Engineering" @default.
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- W3082575256 doi "https://doi.org/10.1002/9781119143802.ch54" @default.
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