B. Kankilic Et Al. , "Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells," FRONTIERS IN SURGERY , vol.9, 2022
Kankilic, B. Et Al. 2022. Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells. FRONTIERS IN SURGERY , vol.9 .
Kankilic, B., Bayramli, E., KORKUSUZ, P., EROĞLU, H., ŞENER, B., MUTLU, P., ... KORKUSUZ, F.(2022). Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells. FRONTIERS IN SURGERY , vol.9.
Kankilic, Berna Et Al. "Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells," FRONTIERS IN SURGERY , vol.9, 2022
Kankilic, Berna Et Al. "Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells." FRONTIERS IN SURGERY , vol.9, 2022
Kankilic, B. Et Al. (2022) . "Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells." FRONTIERS IN SURGERY , vol.9.
@article{article, author={Berna Kankilic Et Al. }, title={Vancomycin Containing PDLLA and PLGA/beta-TCP Inhibit Biofilm Formation but Do Not Stimulate Osteogenic Transformation of Human Mesenchymal Stem Cells}, journal={FRONTIERS IN SURGERY}, year=2022}