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The Journal of Organic Chemistry|December 19, 2013
Aphadilactones A-D, four diterpenoid dimers with DGAT inhibitory and antimalarial activities from a Meliaceae plantJia Liu, Xiu-Feng He, Gai-Hong Wang, et al.The Journal of Biological Chemistry|February 11, 2009
Carotenoid biosynthesis in intraerythrocytic stages of Plasmodium falciparumRenata Tonhosolo, Fabio L D'Alexandri, Veridiana V de Rosso, et al.Planta Medica|July 2, 2015
New Bioactive Lupane Triterpene Coumaroyl Esters Isolated from Buxus cochinchinensisLi Pan, Ulyana Muñoz Acuña, Heebyung Chai, et al.The Journal of Biological Chemistry|September 29, 2004
The methylerythritol phosphate pathway is functionally active in all intraerythrocytic stages of Plasmodium falciparumMaría B Cassera, Fabio C Gozzo, Fabio L D'Alexandri, et al.Molecular and Biochemical Parasitology|May 30, 2006
Multi-character population study of the vir subtelomeric multigene superfamily of Plasmodium vivax, a major human malaria parasiteEmilio F Merino, Carmen Fernandez-Becerra, Alan M Durham, et al.RSC Medicinal Chemistry|August 29, 2025
Benzo-ring modification on Malaria Box hit MMV008138: effects on antimalarial potency and microsomal stabilityMaryam Ghavami, Haibo Li, Lixuan Liu, et al.ACS Infectious Diseases|October 27, 2017
Biological Studies and Target Engagement of the 2- C-Methyl-d-Erythritol 4-Phosphate Cytidylyltransferase (IspD)-Targeting Antimalarial Agent (1 R,3 S)-MMV008138 and AnalogsMaryam Ghavami, Emilio F Merino, Zhong-Ke Yao, et al.Journal of Medicinal Chemistry|April 27, 2026
Identification of an Orally Efficacious Imidazo[4,5-c]pyridine-6-Carboxamide Antimalarial with a High Barrier to ResistanceBo Zhou, Leticia S Do Amaral, Emily K Bremers, et al.ACS Infectious Diseases|October 17, 2025
Characterization of β-Carboline Derivatives Reveals a High Barrier to Resistance and Potent Activity against Ring-Stage and DHA-Induced Dormant Plasmodium falciparumReagan S Haney, Joshua H Butler, Lyric A Wardlaw, et al.ACS Infectious Diseases|October 28, 2024
β-Carboline-3-carboxamide Antimalarials: Structure-Activity Relationship, ADME-Tox Studies, and Resistance ProfilingJopaul Mathew, Bo Zhou, Reagan S Haney, et al.Pageof 5