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International Journal of Biological Macromolecules|July 30, 2018
Gelatin/PVA scaffolds fabricated using a 3D-printing process employed with a low-temperature plate for hard tissue regeneration: Fabrication and characterizationsHaeri Kim, Gi Hoon Yang, Chang Hyun Choi, et al.Materials Science & Engineering. C, Materials for Biological Applications|March 10, 2018
Fabrication of micro/nanoporous collagen/dECM/silk-fibroin biocomposite scaffolds using a low temperature 3D printing process for bone tissue regenerationHyeongjin Lee, Gi Hoon Yang, Minseong Kim, et al.Biomaterials Science|October 31, 2023
A multi-channel collagen conduit with aligned Schwann cells and endothelial cells for enhanced neuronal regeneration in spinal cord injuryHye Yeong Lee, Seo Hyun Moon, Donggu Kang, et al.Journal of Colloid and Interface Science|September 28, 2015
Mechanically reinforced cell-laden scaffolds formed using alginate-based bioink printed onto the surface of a PCL/alginate mesh structure for regeneration of hard tissueYong Bok Kim, Hyeongjin Lee, Gi-Hoon Yang, et al.Biomaterials Research|July 4, 2021
Overcome the barriers of the skin: exosome therapyGi Hoon Yang, Yoon Bum Lee, Donggu Kang, et al.International Journal of Bioprinting|February 27, 2023
FeS2-incorporated 3D PCL scaffold improves new bone formation and neovascularization in a rat calvarial defect modelDonggu Kang, Yoon Bum Lee, Gi Hoon Yang, et al.Biomaterials Research|December 6, 2022
Advances in the development of tubular structures using extrusion-based 3D cell-printing technology for vascular tissue regenerative applicationsGi Hoon Yang, Donggu Kang, SangHyun An, et al.Regenerative Biomaterials|March 19, 2021
3D-printed gelatin methacrylate (GelMA)/silanated silica scaffold assisted by two-stage cooling system for hard tissue regenerationEunjeong Choi, Dongyun Kim, Donggu Kang, et al.Pageof 2