Amaral, M.; Martins, A.S.; Catarino, J.; FaÃsca, P.; Kumar, P.; Pinto, J.F.; Pinto, R.; Correia, I.; Ascensão, L.; Afonso, R.A.;
et al. How Can Biomolecules Improve Mucoadhesion of Oral Insulin? A Comprehensive Insight using Ex-Vivo, In Silico, and In Vivo Models. Biomolecules 2020, 10, 675.
https://doi.org/10.3390/biom10050675
AMA Style
Amaral M, Martins AS, Catarino J, FaÃsca P, Kumar P, Pinto JF, Pinto R, Correia I, Ascensão L, Afonso RA,
et al. How Can Biomolecules Improve Mucoadhesion of Oral Insulin? A Comprehensive Insight using Ex-Vivo, In Silico, and In Vivo Models. Biomolecules. 2020; 10(5):675.
https://doi.org/10.3390/biom10050675
Chicago/Turabian Style
Amaral, Mariana, Ana Sofia Martins, José Catarino, Pedro FaÃsca, Pradeep Kumar, João F. Pinto, Rui Pinto, Isabel Correia, Lia Ascensão, Ricardo A. Afonso,
and et al. 2020. "How Can Biomolecules Improve Mucoadhesion of Oral Insulin? A Comprehensive Insight using Ex-Vivo, In Silico, and In Vivo Models" Biomolecules 10, no. 5: 675.
https://doi.org/10.3390/biom10050675
APA Style
Amaral, M., Martins, A. S., Catarino, J., FaÃsca, P., Kumar, P., Pinto, J. F., Pinto, R., Correia, I., Ascensão, L., Afonso, R. A., Gaspar, M. M., Charmier, A. J., Figueiredo, I. V., & Reis, C. P.
(2020). How Can Biomolecules Improve Mucoadhesion of Oral Insulin? A Comprehensive Insight using Ex-Vivo, In Silico, and In Vivo Models. Biomolecules, 10(5), 675.
https://doi.org/10.3390/biom10050675