Shaqour, B.; Reigada, I.; Górecka, Ż.; Choińska, E.; Verleije, B.; Beyers, K.; Święszkowski, W.; Fallarero, A.; Cos, P.
3D-Printed Drug Delivery Systems: The Effects of Drug Incorporation Methods on Their Release and Antibacterial Efficiency. Materials 2020, 13, 3364.
https://doi.org/10.3390/ma13153364
AMA Style
Shaqour B, Reigada I, Górecka Ż, Choińska E, Verleije B, Beyers K, Święszkowski W, Fallarero A, Cos P.
3D-Printed Drug Delivery Systems: The Effects of Drug Incorporation Methods on Their Release and Antibacterial Efficiency. Materials. 2020; 13(15):3364.
https://doi.org/10.3390/ma13153364
Chicago/Turabian Style
Shaqour, Bahaa, Inés Reigada, Żaneta Górecka, Emilia Choińska, Bart Verleije, Koen Beyers, Wojciech Święszkowski, Adyary Fallarero, and Paul Cos.
2020. "3D-Printed Drug Delivery Systems: The Effects of Drug Incorporation Methods on Their Release and Antibacterial Efficiency" Materials 13, no. 15: 3364.
https://doi.org/10.3390/ma13153364
APA Style
Shaqour, B., Reigada, I., Górecka, Ż., Choińska, E., Verleije, B., Beyers, K., Święszkowski, W., Fallarero, A., & Cos, P.
(2020). 3D-Printed Drug Delivery Systems: The Effects of Drug Incorporation Methods on Their Release and Antibacterial Efficiency. Materials, 13(15), 3364.
https://doi.org/10.3390/ma13153364