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Showing 1 to 4 of 4 for “"IspD"”.

  1. MMV008138 and analogs: potential novel antimalarial agents for P. falciparum

    … Later work revealed that it targets the IspD enzyme within the MEP pathway. Work in the Carlier group has established preliminary structure-activity relationship (SAR) of MMV008138: 1) (1R,3S)-configuration is required; 2) 2', 4'-disubstitution of the D-ring with small, electronegative …

    vt Repository record for MMV008138 and analogs: potential novel antimalarial agents for P. falciparum (opens in a new tab)

  2. Novel Antimalarial Compounds from the Optimization of the Malaria Box

    … of action. The target of MMV008138 is the PfIspD enzyme in the MEP pathway, which is absent in humans. This difference makes the PfIspD a great target. However, while MMV008138 shows potency against Plasmodium falciparum-infected human erythrocytes in vitro, no efficacy was observed in a …

    vt Repository record for Novel Antimalarial Compounds from the Optimization of the Malaria Box (opens in a new tab)

  3. 1,3-Disubstituted-tetrahydro-β-carbolines: A New Method for Stereochemical Assignment and Synthesis of Potential Antimalarial Agents

    … satisfactorily inhibits the target PfIspD enzyme. Thus a secure determination of stereochemistry in 1a analogs was of utmost importance to the structure-activity relationship studies performed in our group. The second chapter of this work discusses the validation of the previously …

    vt Repository record for 1,3-Disubstituted-tetrahydro-β-carbolines: A New Method for Stereochemical Assignment and Synthesis of Potential Antimalarial Agents (opens in a new tab)

  4. Antimalarial Agents: New Mechanisms of Actions for Old and New Drugs

    Worldwide, malaria is one of the deadliest diseases. In 2016 it sickened 216 million people and caused 445,000 deaths. In order to control the spread of this deadly diseases to human, we can either target the mosquito vector (Anopheles gambiae) or the parasite (Plasmodium falciparum). Due to recent …

    vt Repository record for Antimalarial Agents: New Mechanisms of Actions for Old and New Drugs (opens in a new tab)