Caputo, A.; Sartini, S.; Levati, E.; Minato, I.; Elisi, G.M.; Di Stasi, A.; Guillou, C.; Goekjian, P.G.; Garcia, P.; Gueyrard, D.;
et al. An Optimized Workflow for the Discovery of New Antimicrobial Compounds Targeting Bacterial RNA Polymerase Complex Formation. Antibiotics 2022, 11, 1449.
https://doi.org/10.3390/antibiotics11101449
AMA Style
Caputo A, Sartini S, Levati E, Minato I, Elisi GM, Di Stasi A, Guillou C, Goekjian PG, Garcia P, Gueyrard D,
et al. An Optimized Workflow for the Discovery of New Antimicrobial Compounds Targeting Bacterial RNA Polymerase Complex Formation. Antibiotics. 2022; 11(10):1449.
https://doi.org/10.3390/antibiotics11101449
Chicago/Turabian Style
Caputo, Alessia, Sara Sartini, Elisabetta Levati, Ilaria Minato, Gian Marco Elisi, Adriana Di Stasi, Catherine Guillou, Peter G. Goekjian, Pierre Garcia, David Gueyrard,
and et al. 2022. "An Optimized Workflow for the Discovery of New Antimicrobial Compounds Targeting Bacterial RNA Polymerase Complex Formation" Antibiotics 11, no. 10: 1449.
https://doi.org/10.3390/antibiotics11101449
APA Style
Caputo, A., Sartini, S., Levati, E., Minato, I., Elisi, G. M., Di Stasi, A., Guillou, C., Goekjian, P. G., Garcia, P., Gueyrard, D., Bach, S., Comte, A., Ottonello, S., Rivara, S., & Montanini, B.
(2022). An Optimized Workflow for the Discovery of New Antimicrobial Compounds Targeting Bacterial RNA Polymerase Complex Formation. Antibiotics, 11(10), 1449.
https://doi.org/10.3390/antibiotics11101449