García-García, J.; Azuara, G.; Fraile-Martinez, O.; García-Montero, C.; Álvarez-Mon, M.A.; Ruíz-Díez, S.; Álvarez-Mon, M.; Buján, J.; García-Honduvilla, N.; Ortega, M.A.;
et al. Modification of the Polymer of a Bone Cement with Biodegradable Microspheres of PLGA and Loading with Daptomycin and Vancomycin Improve the Response to Bone Tissue Infection. Polymers 2022, 14, 888.
https://doi.org/10.3390/polym14050888
AMA Style
García-García J, Azuara G, Fraile-Martinez O, García-Montero C, Álvarez-Mon MA, Ruíz-Díez S, Álvarez-Mon M, Buján J, García-Honduvilla N, Ortega MA,
et al. Modification of the Polymer of a Bone Cement with Biodegradable Microspheres of PLGA and Loading with Daptomycin and Vancomycin Improve the Response to Bone Tissue Infection. Polymers. 2022; 14(5):888.
https://doi.org/10.3390/polym14050888
Chicago/Turabian Style
García-García, Joaquin, Galo Azuara, Oscar Fraile-Martinez, Cielo García-Montero, Miguel Angel Álvarez-Mon, Sara Ruíz-Díez, Melchor Álvarez-Mon, Julia Buján, Natalio García-Honduvilla, Miguel A. Ortega,
and et al. 2022. "Modification of the Polymer of a Bone Cement with Biodegradable Microspheres of PLGA and Loading with Daptomycin and Vancomycin Improve the Response to Bone Tissue Infection" Polymers 14, no. 5: 888.
https://doi.org/10.3390/polym14050888
APA Style
García-García, J., Azuara, G., Fraile-Martinez, O., García-Montero, C., Álvarez-Mon, M. A., Ruíz-Díez, S., Álvarez-Mon, M., Buján, J., García-Honduvilla, N., Ortega, M. A., & De la Torre, B.
(2022). Modification of the Polymer of a Bone Cement with Biodegradable Microspheres of PLGA and Loading with Daptomycin and Vancomycin Improve the Response to Bone Tissue Infection. Polymers, 14(5), 888.
https://doi.org/10.3390/polym14050888