Cite
A further pocket or conformational plasticity by mapping COX-1 catalytic site through modified-mofezolac structure-inhibitory activity relationships and their antiplatelet behavior.
MLA
Solidoro, Roberta, et al. “A Further Pocket or Conformational Plasticity by Mapping COX-1 Catalytic Site through Modified-Mofezolac Structure-Inhibitory Activity Relationships and Their Antiplatelet Behavior.” European Journal of Medicinal Chemistry, vol. 266, Feb. 2024, p. 116135. EBSCOhost, https://doi.org/10.1016/j.ejmech.2024.116135.
APA
Solidoro, R., Miciaccia, M., Bonaccorso, C., Fortuna, C. G., Armenise, D., Centonze, A., Ferorelli, S., Vitale, P., Rodrigues, P., Guimarães, R., de Oliveira, A., da Paz, M., Rangel, L., Sathler, P. C., Altomare, A., Perrone, M. G., & Scilimati, A. (2024). A further pocket or conformational plasticity by mapping COX-1 catalytic site through modified-mofezolac structure-inhibitory activity relationships and their antiplatelet behavior. European Journal of Medicinal Chemistry, 266, 116135. https://doi.org/10.1016/j.ejmech.2024.116135
Chicago
Solidoro, Roberta, Morena Miciaccia, Carmela Bonaccorso, Cosimo Gianluca Fortuna, Domenico Armenise, Antonella Centonze, Savina Ferorelli, et al. 2024. “A Further Pocket or Conformational Plasticity by Mapping COX-1 Catalytic Site through Modified-Mofezolac Structure-Inhibitory Activity Relationships and Their Antiplatelet Behavior.” European Journal of Medicinal Chemistry 266 (February): 116135. doi:10.1016/j.ejmech.2024.116135.