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ACS Infectious Diseases|January 9, 2020
Re-Engineering of Yohimbine's Biological Activity through Ring Distortion: Identification and Structure-Activity Relationships of a New Class of Antiplasmodial AgentsNicholas G Paciaroni, David L Perry, Verrill M Norwood, et al.Chembiochem : a European Journal of Chemical Biology|November 1, 2013
Dual targeting of the Warburg effect with a glucose-conjugated lactate dehydrogenase inhibitorEmilia C Calvaresi, Carlotta Granchi, Tiziano Tuccinardi, et al.Journal of Medicinal Chemistry|March 29, 2016
Structure-Activity Relationships of a Diverse Class of Halogenated Phenazines That Targets Persistent, Antibiotic-Tolerant Bacterial Biofilms and Mycobacterium tuberculosisAaron T Garrison, Yasmeen Abouelhassan, Verrill M Norwood, et al.Organic & Biomolecular Chemistry|January 22, 2025
Identification of 6,8-ditrifluoromethyl halogenated phenazine as a potent bacterial biofilm-eradicating agentQiwen Gao, Hongfen Yang, Jeremy Sheiber, et al.Journal of Medicinal Chemistry|January 9, 2020
Preventing Morphine-Seeking Behavior through the Re-Engineering of Vincamine's Biological ActivityVerrill M Norwood, Ariana C Brice-Tutt, Shainnel O Eans, et al.Organic & Biomolecular Chemistry|August 8, 2024
Chloroformate-mediated ring cleavage of indole alkaloids leads to re-engineered antiplasmodial agentsDaniel C Schultz, Alejandra Chávez-Riveros, Michael G Goertzen, et al.ACS Infectious Diseases|March 2, 2021
Evolution of Resistance to Phenazine Antibiotics in Staphylococcus aureus and Its Role During Coinfection with Pseudomonas aeruginosaTongtong Fu, Zhao Cai, Zhuo Yue, et al.Journal of Medicinal Chemistry|April 21, 2021
A Modular Synthetic Route Involving N-Aryl-2-nitrosoaniline Intermediates Leads to a New Series of 3-Substituted Halogenated Phenazine Antibacterial AgentsHongfen Yang, Shivani Kundra, Michaelle Chojnacki, et al.Iscience|April 28, 2022
Molecular characterization of myotonic dystrophy fibroblast cell lines for use in small molecule screeningJana R Jenquin, Alana P O'Brien, Kiril Poukalov, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|April 30, 2026
Natural Products Inspired Scaffold Diversification Leads to Unnatural Molecular Warhead and Covalent Strategy to Modulating Protein Function through Electrophilic Bromine TransferBeau R Brummel, Sofia Kokkaliari, Qiwen Gao, et al.Pageof 7