Nanoengineered Ionic-Covalent Entanglement (NICE) Bioinks for 3D Bioprinting.
D Chimene, CW Peak, J Gentry, JK Carrow, LM Cross… - ACS applied materials & …, 2018
We introduce an enhanced nanoengineered ionic covalent entanglement (NICE) bioink for
the fabrication of mechanically stiff and elastomeric 3D biostructures. NICE bioink
formulations combine nanocomposite and ionic covalent entanglement (ICE) strengthening
the fabrication of mechanically stiff and elastomeric 3D biostructures. NICE bioink
formulations combine nanocomposite and ionic covalent entanglement (ICE) strengthening
[HTML] 3D bioprinting for biomedical devices and tissue engineering: A review of recent trends and advances
S Derakhshanfar, R Mbeleck, K Xu, X Zhang, W Zhong… - Bioactive Materials, 2018
Abstract 3D printing, an additive manufacturing based technology for precise 3D
construction, is currently widely employed to enhance applicability and function of cell laden
scaffolds. Research on novel compatible biomaterials for bioprinting exhibiting fast
construction, is currently widely employed to enhance applicability and function of cell laden
scaffolds. Research on novel compatible biomaterials for bioprinting exhibiting fast
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