Kazimierczak, P.; Balaha, M.; Palka, K.; Wessely-Szponder, J.; Wojcik, M.; di Giacomo, V.; De Filippis, B.; Przekora, A.
Macroporous Hydroxyapatite-Based Bone Scaffolds Loaded with CAPE Derivatives: A Strategy to Reduce Oxidative Stress and Biofilm Formation. Materials 2025, 18, 5074.
https://doi.org/10.3390/ma18225074
AMA Style
Kazimierczak P, Balaha M, Palka K, Wessely-Szponder J, Wojcik M, di Giacomo V, De Filippis B, Przekora A.
Macroporous Hydroxyapatite-Based Bone Scaffolds Loaded with CAPE Derivatives: A Strategy to Reduce Oxidative Stress and Biofilm Formation. Materials. 2025; 18(22):5074.
https://doi.org/10.3390/ma18225074
Chicago/Turabian Style
Kazimierczak, Paulina, Marwa Balaha, Krzysztof Palka, Joanna Wessely-Szponder, Michal Wojcik, Viviana di Giacomo, Barbara De Filippis, and Agata Przekora.
2025. "Macroporous Hydroxyapatite-Based Bone Scaffolds Loaded with CAPE Derivatives: A Strategy to Reduce Oxidative Stress and Biofilm Formation" Materials 18, no. 22: 5074.
https://doi.org/10.3390/ma18225074
APA Style
Kazimierczak, P., Balaha, M., Palka, K., Wessely-Szponder, J., Wojcik, M., di Giacomo, V., De Filippis, B., & Przekora, A.
(2025). Macroporous Hydroxyapatite-Based Bone Scaffolds Loaded with CAPE Derivatives: A Strategy to Reduce Oxidative Stress and Biofilm Formation. Materials, 18(22), 5074.
https://doi.org/10.3390/ma18225074