Almohamady, H.I.; Mortagi, Y.; Gad, S.; Zaitone, S.; Alshaman, R.; Alattar, A.; Alanazi, F.E.; Hanna, P.A.
Spanlastic Nano-Vesicles: A Novel Approach to Improve the Dissolution, Bioavailability, and Pharmacokinetic Behavior of Famotidine. Pharmaceuticals 2024, 17, 1614.
https://doi.org/10.3390/ph17121614
AMA Style
Almohamady HI, Mortagi Y, Gad S, Zaitone S, Alshaman R, Alattar A, Alanazi FE, Hanna PA.
Spanlastic Nano-Vesicles: A Novel Approach to Improve the Dissolution, Bioavailability, and Pharmacokinetic Behavior of Famotidine. Pharmaceuticals. 2024; 17(12):1614.
https://doi.org/10.3390/ph17121614
Chicago/Turabian Style
Almohamady, Hend I., Yasmin Mortagi, Shadeed Gad, Sawsan Zaitone, Reem Alshaman, Abdullah Alattar, Fawaz E. Alanazi, and Pierre A. Hanna.
2024. "Spanlastic Nano-Vesicles: A Novel Approach to Improve the Dissolution, Bioavailability, and Pharmacokinetic Behavior of Famotidine" Pharmaceuticals 17, no. 12: 1614.
https://doi.org/10.3390/ph17121614
APA Style
Almohamady, H. I., Mortagi, Y., Gad, S., Zaitone, S., Alshaman, R., Alattar, A., Alanazi, F. E., & Hanna, P. A.
(2024). Spanlastic Nano-Vesicles: A Novel Approach to Improve the Dissolution, Bioavailability, and Pharmacokinetic Behavior of Famotidine. Pharmaceuticals, 17(12), 1614.
https://doi.org/10.3390/ph17121614