3D bioprinting of tissue constructs employing dual crosslinking of decellularized extracellular matrix hydrogel
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Development and characterization of graphene derivative-GelMA hybrid bioinks for the generation of bioartificial tissue substitutes via 3D bioprinting
Lavin-López et al., International Journal of Bioprinting February 2025
Exploring triazene derivative’s antimicrobial activity and its incorporation onto 3D-printed coatings
Vieira et al., Materials Today Chemistry 38 (2024) 102133
Enabling 3D bioprinting of cell-laden pure collagen scaffolds via tannic acid supporting bath
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Printability of Double Network Alginate-Based Hydrogel for 3D Bio-Printed Complex Structures
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Species-Based Differences in Mechanical Properties, Cytocompatibility, and Printability of Methacrylated Collagen Hydrogels
Ali et al., Biomacromolecules 2022, 23, 5137−5147
Biocomposites of Bio-Polyethylene Reinforced with a Hydrothermal-Alkaline Sugarcane Bagasse Pulp and Coupled with a Bio-Based Compatibilizer
Ehman et al., Molecules 2020, 25, 2158
Dual crosslinking strategy to generate mechanically viable cell-laden printable constructs using methacrylated collagen bioinks
Kajave et al., Materials Science & Engineering C 107 (2020) 110290
In vitro characterization of xeno-free clinically relevant human collagen and its applicability in cell-laden 3D bioprinting
Schmitt et al., Journal of Biomaterials Applications 2020 (0) 1–12
Validation of the 1,4-butanediol thermoplastic polyurethane as a novel material for 3D bioprinting applications
Chocarro-Wrona et al., Bioeng Transl Med . 2020 Nov 14;6(1):e10192
Proof of concept, design, and manufacture via 3‐D printing of a mesh with bactericidal capacity: Behaviour in vitro and in vivo
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Nanocellulose-Based Inks—Effect of Alginate Content on the Water Absorption of 3D Printed Constructs
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