Ahmmed, F.; Al-Mijalli, S.H.; Abdallah, E.M.; Eissa, I.H.; Ali, F.; Bhat, A.R.; Jamalis, J.; Ben Hadda, T.; Kawsar, S.M.A.
Galactoside-Based Molecule Enhanced Antimicrobial Activity through Acyl Moiety Incorporation: Synthesis and In Silico Exploration for Therapeutic Target. Pharmaceuticals 2023, 16, 998.
https://doi.org/10.3390/ph16070998
AMA Style
Ahmmed F, Al-Mijalli SH, Abdallah EM, Eissa IH, Ali F, Bhat AR, Jamalis J, Ben Hadda T, Kawsar SMA.
Galactoside-Based Molecule Enhanced Antimicrobial Activity through Acyl Moiety Incorporation: Synthesis and In Silico Exploration for Therapeutic Target. Pharmaceuticals. 2023; 16(7):998.
https://doi.org/10.3390/ph16070998
Chicago/Turabian Style
Ahmmed, Faez, Samiah Hamad Al-Mijalli, Emad M. Abdallah, Ibrahim H. Eissa, Ferdausi Ali, Ajmal R. Bhat, Joazaizulfazli Jamalis, Taibi Ben Hadda, and Sarkar M. A. Kawsar.
2023. "Galactoside-Based Molecule Enhanced Antimicrobial Activity through Acyl Moiety Incorporation: Synthesis and In Silico Exploration for Therapeutic Target" Pharmaceuticals 16, no. 7: 998.
https://doi.org/10.3390/ph16070998
APA Style
Ahmmed, F., Al-Mijalli, S. H., Abdallah, E. M., Eissa, I. H., Ali, F., Bhat, A. R., Jamalis, J., Ben Hadda, T., & Kawsar, S. M. A.
(2023). Galactoside-Based Molecule Enhanced Antimicrobial Activity through Acyl Moiety Incorporation: Synthesis and In Silico Exploration for Therapeutic Target. Pharmaceuticals, 16(7), 998.
https://doi.org/10.3390/ph16070998