Herrera-Alonso, A.E.; Ibarra-Alonso, M.C.; Esparza-González, S.C.; Estrada-Flores, S.; GarcÃa-Cerda, L.A.; MartÃnez-Luévanos, A.
Biomimetic Growth of Hydroxyapatite on SiO2 Microspheres to Improve Its Biocompatibility and Gentamicin Loading Capacity. Materials 2021, 14, 6941.
https://doi.org/10.3390/ma14226941
AMA Style
Herrera-Alonso AE, Ibarra-Alonso MC, Esparza-González SC, Estrada-Flores S, GarcÃa-Cerda LA, MartÃnez-Luévanos A.
Biomimetic Growth of Hydroxyapatite on SiO2 Microspheres to Improve Its Biocompatibility and Gentamicin Loading Capacity. Materials. 2021; 14(22):6941.
https://doi.org/10.3390/ma14226941
Chicago/Turabian Style
Herrera-Alonso, Alejandra E., MarÃa C. Ibarra-Alonso, Sandra C. Esparza-González, SofÃa Estrada-Flores, Luis A. GarcÃa-Cerda, and Antonia MartÃnez-Luévanos.
2021. "Biomimetic Growth of Hydroxyapatite on SiO2 Microspheres to Improve Its Biocompatibility and Gentamicin Loading Capacity" Materials 14, no. 22: 6941.
https://doi.org/10.3390/ma14226941
APA Style
Herrera-Alonso, A. E., Ibarra-Alonso, M. C., Esparza-González, S. C., Estrada-Flores, S., GarcÃa-Cerda, L. A., & MartÃnez-Luévanos, A.
(2021). Biomimetic Growth of Hydroxyapatite on SiO2 Microspheres to Improve Its Biocompatibility and Gentamicin Loading Capacity. Materials, 14(22), 6941.
https://doi.org/10.3390/ma14226941