Dror Seliktar, Ph.D.
Affiliations: | 2000 | Georgia Institute of Technology, Atlanta, GA |
Area:
Biomedical EngineeringGoogle:
"Dror Seliktar"Parents
Sign in to add mentorRobert M. Nerem | grad student | 2000 | Georgia Tech | |
(Dynamic mechanical conditioning regulates the development of cell -seeded collagen constructs in vitro: Implications for tissue -engineered blood vessels.) |
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Publications
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Goldshmid R, Simaan-Yameen H, Ifergan L, et al. (2023) Modulus-dependent effects on neurogenic, myogenic, and chondrogenic differentiation of human mesenchymal stem cells in three-dimensional hydrogel cultures. Journal of Biomedical Materials Research. Part A |
Simaan-Yameen H, Bar-Am O, Saar G, et al. (2023) Methacrylated Fibrinogen Hydrogels for 3D Cell Culture and Delivery. Acta Biomaterialia |
Szklanny AA, Machour M, Redenski I, et al. (2021) 3D Bioprinting of Engineered Tissue Flaps with Hierarchical Vessel Networks (VesselNet) for Direct Host-To-Implant Perfusion. Advanced Materials (Deerfield Beach, Fla.). e2102661 |
Buonvino S, Ciocci M, Seliktar D, et al. (2021) Photo-Polymerization Damage Protection by Hydrogen Sulfide Donors for 3D-Cell Culture Systems Optimization. International Journal of Molecular Sciences. 22 |
Costantini M, Barbetta A, Swieszkowski W, et al. (2021) Photocurable Biopolymers for Coaxial Bioprinting. Methods in Molecular Biology (Clifton, N.J.). 2147: 45-54 |
Schmitz C, Pepelanova I, Seliktar D, et al. (2020) Live reporting for hypoxia: hypoxia-sensor modified mesenchymal stem cells as in vitro reporters. Biotechnology and Bioengineering |
Loebel C, Ayoub A, Galarraga JH, et al. (2019) Tailoring supramolecular guest-host hydrogel viscoelasticity with covalent fibrinogen double networks. Journal of Materials Chemistry. B. 7: 1753-1760 |
Sheyn D, Ben-David S, Tawackoli W, et al. (2019) Human iPSCs can be differentiated into notochordal cells that reduce intervertebral disc degeneration in a porcine model. Theranostics. 9: 7506-7524 |
Yosef A, Kossover O, Mironi-Harpaz I, et al. (2019) Fibrinogen-Based Hydrogel Modulus and Ligand Density Effects on Cell Morphogenesis in Two-Dimensional and Three-Dimensional Cell Cultures. Advanced Healthcare Materials. e1801436 |
Fuoco C, Sangalli E, Vono R, et al. (2019) Corrigendum: 3D hydrogel environment rejuvenates aged pericytes for skeletal muscle tissue engineering. Frontiers in Physiology. 10: 199 |