Sue, K.; Cadelis, M.M.; Troia, T.; Rouvier, F.; Bourguet-Kondracki, M.-L.; Brunel, J.M.; Copp, B.R.
Investigation of α,ω-Disubstituted Polyamine-Cholic Acid Conjugates Identifies Hyodeoxycholic and Chenodeoxycholic Scaffolds as Non-Toxic, Potent Antimicrobials. Antibiotics 2023, 12, 404.
https://doi.org/10.3390/antibiotics12020404
AMA Style
Sue K, Cadelis MM, Troia T, Rouvier F, Bourguet-Kondracki M-L, Brunel JM, Copp BR.
Investigation of α,ω-Disubstituted Polyamine-Cholic Acid Conjugates Identifies Hyodeoxycholic and Chenodeoxycholic Scaffolds as Non-Toxic, Potent Antimicrobials. Antibiotics. 2023; 12(2):404.
https://doi.org/10.3390/antibiotics12020404
Chicago/Turabian Style
Sue, Kenneth, Melissa M. Cadelis, Thomas Troia, Florent Rouvier, Marie-Lise Bourguet-Kondracki, Jean Michel Brunel, and Brent R. Copp.
2023. "Investigation of α,ω-Disubstituted Polyamine-Cholic Acid Conjugates Identifies Hyodeoxycholic and Chenodeoxycholic Scaffolds as Non-Toxic, Potent Antimicrobials" Antibiotics 12, no. 2: 404.
https://doi.org/10.3390/antibiotics12020404
APA Style
Sue, K., Cadelis, M. M., Troia, T., Rouvier, F., Bourguet-Kondracki, M. -L., Brunel, J. M., & Copp, B. R.
(2023). Investigation of α,ω-Disubstituted Polyamine-Cholic Acid Conjugates Identifies Hyodeoxycholic and Chenodeoxycholic Scaffolds as Non-Toxic, Potent Antimicrobials. Antibiotics, 12(2), 404.
https://doi.org/10.3390/antibiotics12020404