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Bioprinting with bioactive alginate dialdehyde-gelatin (ADA-GEL) composite bioinks: Time-dependent in-situ crosslinking via addition of calcium-silicate particles tunes in vitro stability of 3D bioprinted constructs - ScienceDirect
An Inverse Thermogelling Bioink Based on an ABA-Type Poly(2-oxazoline) Amphiphile | Biomacromolecules
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Oxidized Hyaluronic Acid-Gelatin-Based Hydrogels for Tissue Engineering and Soft Tissue Mimicking | Tissue Engineering Part C: Methods
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An Inverse Thermogelling Bioink based on an ABA type Poly(2-oxazoline) Amphiphile
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Oxidized Hyaluronic Acid-Gelatin-Based Hydrogels for Tissue Engineering and Soft Tissue Mimicking | Tissue Engineering Part C: Methods
An Inverse Thermogelling Bioink Based on an ABA-Type Poly(2-oxazoline) Amphiphile | Biomacromolecules
Bioprinting with bioactive alginate dialdehyde-gelatin (ADA-GEL) composite bioinks: Time-dependent in-situ crosslinking via addition of calcium-silicate particles tunes in vitro stability of 3D bioprinted constructs - ScienceDirect
A Thermogelling Organic-Inorganic Hybrid Hydrogel with Excellent Printability, Shape Fidelity and Cytocompatibility for 3D Biopr
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Oxidized Hyaluronic Acid-Gelatin-Based Hydrogels for Tissue Engineering and Soft Tissue Mimicking | Tissue Engineering Part C: Methods
Bioprinting with bioactive alginate dialdehyde-gelatin (ADA-GEL) composite bioinks: Time-dependent in-situ crosslinking via addition of calcium-silicate particles tunes in vitro stability of 3D bioprinted constructs - ScienceDirect
A Thermogelling Organic-Inorganic Hybrid Hydrogel with Excellent Printability, Shape Fidelity and Cytocompatibility for 3D Biopr
An Inverse Thermogelling Bioink Based on an ABA-Type Poly(2-oxazoline) Amphiphile | Biomacromolecules
A thermogelling organic-inorganic hybrid hydrogel with excellent printability, shape fidelity and cytocompatibility for 3D bioprinting - IOPscience
An Inverse Thermogelling Bioink based on an ABA type Poly(2-oxazoline) Amphiphile
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Bioprinting with bioactive alginate dialdehyde-gelatin (ADA-GEL) composite bioinks: Time-dependent in-situ crosslinking via addition of calcium-silicate particles tunes in vitro stability of 3D bioprinted constructs - ScienceDirect
Alginate-based hydrogels show the same complex mechanical behavior as brain tissue - ScienceDirect