D’Amora, U.; Soriente, A.; Ronca, A.; Scialla, S.; Perrella, M.; Manini, P.; Phua, J.W.; Ottenheim, C.; Di Girolamo, R.; Pezzella, A.;
et al. Eumelanin from the Black Soldier Fly as Sustainable Biomaterial: Characterisation and Functional Benefits in Tissue-Engineered Composite Scaffolds. Biomedicines 2022, 10, 2945.
https://doi.org/10.3390/biomedicines10112945
AMA Style
D’Amora U, Soriente A, Ronca A, Scialla S, Perrella M, Manini P, Phua JW, Ottenheim C, Di Girolamo R, Pezzella A,
et al. Eumelanin from the Black Soldier Fly as Sustainable Biomaterial: Characterisation and Functional Benefits in Tissue-Engineered Composite Scaffolds. Biomedicines. 2022; 10(11):2945.
https://doi.org/10.3390/biomedicines10112945
Chicago/Turabian Style
D’Amora, Ugo, Alessandra Soriente, Alfredo Ronca, Stefania Scialla, Martina Perrella, Paola Manini, Jun Wei Phua, Christoph Ottenheim, Rocco Di Girolamo, Alessandro Pezzella,
and et al. 2022. "Eumelanin from the Black Soldier Fly as Sustainable Biomaterial: Characterisation and Functional Benefits in Tissue-Engineered Composite Scaffolds" Biomedicines 10, no. 11: 2945.
https://doi.org/10.3390/biomedicines10112945
APA Style
D’Amora, U., Soriente, A., Ronca, A., Scialla, S., Perrella, M., Manini, P., Phua, J. W., Ottenheim, C., Di Girolamo, R., Pezzella, A., Raucci, M. G., & Ambrosio, L.
(2022). Eumelanin from the Black Soldier Fly as Sustainable Biomaterial: Characterisation and Functional Benefits in Tissue-Engineered Composite Scaffolds. Biomedicines, 10(11), 2945.
https://doi.org/10.3390/biomedicines10112945