Gwangju Institute of Science and Technology
11 imported, source-linked research records. Published in the last five years.
11 matching research records
Topic: Organ bioprinting. Only records linked to Gwangju Institute of Science and Technology are included. Historical ingestion is still running; these are imported records, not a count of all research worldwide.
Showing 1–11 of 11 matching records. Counts update as records arrive.
N -Terminal Octylated Peptoid Hydrogels as 3D-Printable Cell Scaffolds and Proteolytically Robust Cargo Depots
February 9, 2026 · 6 citations · Open access
Open original record →Cell‐Laden Constructs with Anisotropic Pores Fabricated by Collagen/Silk‐Fibroin for Muscle Tissue Regeneration
July 10, 2025 · 7 citations · Open access
Open original record →Advances in biomaterial-based composite spheroid for articular cartilage regeneration
July 1, 2025 · 1 citations · Open access
Open original record →Enhanced Myogenic Differentiation of Human Adipose‐Derived Stem Cells via Integration of 3D Bioprinting and In Situ Shear‐Based Blade Coating
October 18, 2024 · 15 citations
Open original record →Bioengineered cell-constructs using decellularized fish skin-based composite bioink for regenerating muscle tissue
April 1, 2024 · 11 citations
Open original record →Macroscale pseudo-spheroids fabricated using methacrylated collagen-coated cells
January 1, 2024 · 4 citations · Open access
Open original record →The one-step fabrication of porous hASC-laden GelMa constructs using a handheld printing system
June 10, 2023 · 20 citations · Open access
Open original record →Keeping your strength up: induced pluripotent stem cell-based approaches for the treatment and investigation of skeletal muscle disorders
May 5, 2023 · 0 citations · Open access
Open original record →3D bioprinting using a new photo-crosslinking method for muscle tissue restoration
March 31, 2023 · 66 citations · Open access
Open original record →Nanomaterial-Based Electrically Conductive Hydrogels for Cardiac Tissue Repair
December 1, 2022 · 68 citations · Open access
Open original record →An osteogenic bioink composed of alginate, cellulose nanofibrils, and polydopamine nanoparticles for 3D bioprinting and bone tissue engineering
February 22, 2022 · 93 citations · Open access
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