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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Advances in Biomaterials for 3D Printing of Scaffolds and Tissues
Presentation Title Engineering Polymeric BioInks for 3D Printing
Author(s) Ashwin Velraj, Jeffrey Scott Bates
On-Site Speaker (Planned) Ashwin Velraj
Abstract Scope Custom biomaterials as inks for 3D printing (BioInks) have been explored to curate features to eliminate device failures caused by structural delamination. In this study, BioInks composed of diacrylated polyethylene glycols of varying molecular weights have been investigated for their inherent swelling, soft mechanical strength, non-reactivity, and biocompatibility. These BioInks have been tuned to be photo-sensitive to a range of wavelengths using a panel of photo-initiator and photo-absorber additives. Modifying viscoelastic and UV-sensitive properties yields cross-platform Bio-Ink compositions that can be printed across stereolithography (SLA), digital light processing (DLP), and direct ink extrusion technologies. 3D-printed seamless hydrogel constructs are great candidates for fabricating biomedical devices that exhibit controlled reactions triggered by shear or compressive pressure changes in their microenvironment as experienced within target organs in the body.
Proceedings Inclusion? Planned:
Keywords Additive Manufacturing, Characterization, Polymers

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

3D Printing and Growing Fungal Tissue in Ambient Environment and Properties
3D Printing of Multiscale Human Tissue and Organ Equivalents
Bioabsorbable PLDL/Mg-wire Composites Manufactured by Fused Filament Fabrication for Tissue Engineering
Biodegradable Polymers for 3D Printing of Tissue Engineering Scaffolds: Challenges and Future Directions
Bioink Formulations for 3D Printing of Tissue Scaffolds: A Review of Materials and Printability
Design and Optimization of a 3D-printed Bioreactor for Long-term Ex-vivo Bone Tissue Culture
Effects of Post-printing Cell Distribution on Cell Viability and Proliferation in Inkjet-based Bioprinting of Vascular Structures
Engineering Polymeric BioInks for 3D Printing
Filaments Made of Magnesium-incorporated Polymer for Potential Use in Bone Implants
Graphene and MXene Nanomaterial Bioinks for Improvement of 3D Bioprinted Tissue Engineering
H-2: 3D Printable Bioscaffolds for Musculoskeletal Tissue Engineering using Ti_3 C_2 MXene Nanoparticles to Enhance Conductivity and Improve Cell Viability
Improving Predictability of Additively Manufactured Ti-6Al-4V Lattices for Customised Orthopaedic Devices
Improving Structural Integrity of a Bioinspired Structures through 3D Printing for Advancing Bone Tissue Engineering
Migration Behavior of Invasive and Non-invasive Breast Cancer Cells on a Graded Micropillar Surface
Structure-property Relationships in Solvent-cast 3D-printed Polymeric Biomaterials
The Influence of Iso-value on 3D-printed Sheet TPMS Ti6Al4V Scaffolds’ Mechanical Responses

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