Rodriguez-Soto, M.A.; Garcia-Brand, A.J.; Riveros, A.; Suarez, N.A.; Serrano, F.; Osma, J.F.; Muñoz Camargo, C.; Cruz, J.C.; Sandoval, N.; Briceño, J.C.
Blood-Vessel-Inspired Hierarchical Trilayer Scaffolds: PCL/Gelatin-Driven Protein Adsorption and Cellular Interaction. Polymers 2022, 14, 2135.
https://doi.org/10.3390/polym14112135
AMA Style
Rodriguez-Soto MA, Garcia-Brand AJ, Riveros A, Suarez NA, Serrano F, Osma JF, Muñoz Camargo C, Cruz JC, Sandoval N, Briceño JC.
Blood-Vessel-Inspired Hierarchical Trilayer Scaffolds: PCL/Gelatin-Driven Protein Adsorption and Cellular Interaction. Polymers. 2022; 14(11):2135.
https://doi.org/10.3390/polym14112135
Chicago/Turabian Style
Rodriguez-Soto, Maria A., Andres J. Garcia-Brand, Alejandra Riveros, Natalia A. Suarez, Fidel Serrano, Johann F. Osma, Carolina Muñoz Camargo, Juan C. Cruz, Nestor Sandoval, and Juan C. Briceño.
2022. "Blood-Vessel-Inspired Hierarchical Trilayer Scaffolds: PCL/Gelatin-Driven Protein Adsorption and Cellular Interaction" Polymers 14, no. 11: 2135.
https://doi.org/10.3390/polym14112135
APA Style
Rodriguez-Soto, M. A., Garcia-Brand, A. J., Riveros, A., Suarez, N. A., Serrano, F., Osma, J. F., Muñoz Camargo, C., Cruz, J. C., Sandoval, N., & Briceño, J. C.
(2022). Blood-Vessel-Inspired Hierarchical Trilayer Scaffolds: PCL/Gelatin-Driven Protein Adsorption and Cellular Interaction. Polymers, 14(11), 2135.
https://doi.org/10.3390/polym14112135