Nascimento, T.R.d.L.; Guérin, A.L.; Rodrigues, M.S.; da Silva, C.F.; Maciel, B.M.; Alhotan, A.; Alhijji, S.; Velo, M.M.A.C.; Castellano, L.R.C.
3D Nanofibrous Scaffolds for Encapsulation-Controlled Vancomycin Delivery: Antibacterial Performance and Cytocompatibility. Polymers 2025, 17, 3116.
https://doi.org/10.3390/polym17233116
AMA Style
Nascimento TRdL, Guérin AL, Rodrigues MS, da Silva CF, Maciel BM, Alhotan A, Alhijji S, Velo MMAC, Castellano LRC.
3D Nanofibrous Scaffolds for Encapsulation-Controlled Vancomycin Delivery: Antibacterial Performance and Cytocompatibility. Polymers. 2025; 17(23):3116.
https://doi.org/10.3390/polym17233116
Chicago/Turabian Style
Nascimento, Tatiana Rita de Lima, Aline Lima Guérin, Mariana Souza Rodrigues, Camila Félix da Silva, Bruno Martins Maciel, Abdulaziz Alhotan, Saleh Alhijji, Marilia Mattar Amoêdo Campos Velo, and Lúcio Roberto Cançado Castellano.
2025. "3D Nanofibrous Scaffolds for Encapsulation-Controlled Vancomycin Delivery: Antibacterial Performance and Cytocompatibility" Polymers 17, no. 23: 3116.
https://doi.org/10.3390/polym17233116
APA Style
Nascimento, T. R. d. L., Guérin, A. L., Rodrigues, M. S., da Silva, C. F., Maciel, B. M., Alhotan, A., Alhijji, S., Velo, M. M. A. C., & Castellano, L. R. C.
(2025). 3D Nanofibrous Scaffolds for Encapsulation-Controlled Vancomycin Delivery: Antibacterial Performance and Cytocompatibility. Polymers, 17(23), 3116.
https://doi.org/10.3390/polym17233116