E. B. Demiray Et Al. , "A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications," Macromolecular Bioscience , 2024
Demiray, E. B. Et Al. 2024. A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications. Macromolecular Bioscience .
Demiray, E. B., Sezgin Arslan, T., DERKUŞ, B., & ARSLAN, Y. E., (2024). A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications. Macromolecular Bioscience .
Demiray, Elif Et Al. "A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications," Macromolecular Bioscience , 2024
Demiray, Elif B. Et Al. "A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications." Macromolecular Bioscience , 2024
Demiray, E. B. Et Al. (2024) . "A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications." Macromolecular Bioscience .
@article{article, author={Elif Beyza Demiray Et Al. }, title={A Facile Strategy for Preparing Flexible and Porous Hydrogel-Based Scaffolds from Silk Sericin/Wool Keratin by In Situ Bubble-Forming for Muscle Tissue Engineering Applications}, journal={Macromolecular Bioscience}, year=2024}