Chen, J.; Hanrahan, J.P.; McGrath, J.; Courtney, M.A.; Prestidge, C.A.; Joyce, P.
The Anti-Obesity Effect of Porous Silica Is Dependent on Pore Nanostructure, Particle Size, and Surface Chemistry in an In Vitro Digestion Model. Pharmaceutics 2022, 14, 1813.
https://doi.org/10.3390/pharmaceutics14091813
AMA Style
Chen J, Hanrahan JP, McGrath J, Courtney MA, Prestidge CA, Joyce P.
The Anti-Obesity Effect of Porous Silica Is Dependent on Pore Nanostructure, Particle Size, and Surface Chemistry in an In Vitro Digestion Model. Pharmaceutics. 2022; 14(9):1813.
https://doi.org/10.3390/pharmaceutics14091813
Chicago/Turabian Style
Chen, JingYi, John P. Hanrahan, Joe McGrath, Melissa A. Courtney, Clive A. Prestidge, and Paul Joyce.
2022. "The Anti-Obesity Effect of Porous Silica Is Dependent on Pore Nanostructure, Particle Size, and Surface Chemistry in an In Vitro Digestion Model" Pharmaceutics 14, no. 9: 1813.
https://doi.org/10.3390/pharmaceutics14091813
APA Style
Chen, J., Hanrahan, J. P., McGrath, J., Courtney, M. A., Prestidge, C. A., & Joyce, P.
(2022). The Anti-Obesity Effect of Porous Silica Is Dependent on Pore Nanostructure, Particle Size, and Surface Chemistry in an In Vitro Digestion Model. Pharmaceutics, 14(9), 1813.
https://doi.org/10.3390/pharmaceutics14091813