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Reagan S Haney

Showing results (1-10 of 8) with videos related to

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Genes|December 1, 2020
Aquatic Exposure to Abscisic Acid Transstadially Enhances <i>Anopheles stephensi</i> Resistance to Malaria Parasite InfectionDean M Taylor, Reagan S Haney, Shirley Luckhart
Frontiers in Microbiology|February 4, 2020
Comprehensive and Durable Modulation of Growth, Development, Lifespan and Fecundity in <i>Anopheles stephensi</i> Following Larval Treatment With the Stress Signaling Molecule and Novel Antimalarial Abscisic AcidDean M Taylor, Cassandra L Olds, Reagan S Haney, et al.
Organic & Biomolecular Chemistry|November 4, 2022
Cephalotane-type C<sub>20</sub> diterpenoids from <i>Cephalotaxus fortunei</i> var. <i>alpina</i>Zhan-Peng Ge, Bin Zhou, Flavia M Zimbres, et al.
ACS Medicinal Chemistry Letters|March 18, 2022
Malaria Box-Inspired Discovery of <i>N</i>-Aminoalkyl-β-carboline-3-carboxamides, a Novel Orally Active Class of AntimalarialsJopaul Mathew, Sha Ding, Kevin A Kunz, 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.
Journal of Medicinal Chemistry|April 27, 2026
Identification of an Orally Efficacious Imidazo[4,5-<i>c</i>]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 <i>Plasmodium falciparum</i>Reagan 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 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Genes|December 1, 2020
Aquatic Exposure to Abscisic Acid Transstadially Enhances <i>Anopheles stephensi</i> Resistance to Malaria Parasite InfectionDean M Taylor, Reagan S Haney, Shirley Luckhart
Frontiers in Microbiology|February 4, 2020
Comprehensive and Durable Modulation of Growth, Development, Lifespan and Fecundity in <i>Anopheles stephensi</i> Following Larval Treatment With the Stress Signaling Molecule and Novel Antimalarial Abscisic AcidDean M Taylor, Cassandra L Olds, Reagan S Haney, et al.
Organic & Biomolecular Chemistry|November 4, 2022
Cephalotane-type C<sub>20</sub> diterpenoids from <i>Cephalotaxus fortunei</i> var. <i>alpina</i>Zhan-Peng Ge, Bin Zhou, Flavia M Zimbres, et al.
ACS Medicinal Chemistry Letters|March 18, 2022
Malaria Box-Inspired Discovery of <i>N</i>-Aminoalkyl-β-carboline-3-carboxamides, a Novel Orally Active Class of AntimalarialsJopaul Mathew, Sha Ding, Kevin A Kunz, 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.
Journal of Medicinal Chemistry|April 27, 2026
Identification of an Orally Efficacious Imidazo[4,5-<i>c</i>]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 <i>Plasmodium falciparum</i>Reagan 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 1