Publications by authors named "Ibrahim A Teka"

Article Synopsis
  • - Mutations in the aquaporin AQP2 lead to resistance against the drugs pentamidine and melarsoprol, with specific amino acid changes influencing drug permeation.
  • - The study reveals that TbAQP2 has evolved to allow the passage of pentamidine through its central pore, unlike its counterpart TbAQP3, which requires specific modifications to become permeable.
  • - Understanding the structural features that enable pentamidine to pass through TbAQP2 might help improve antitrypanosomal treatments and prevent drug resistance, potentially benefiting the broader aquaporin gene family in pharmacology.
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Objectives: Trypanosoma brucei drug transporters include the TbAT1/P2 aminopurine transporter and the high-affinity pentamidine transporter (HAPT1), but the genetic identity of HAPT1 is unknown. We recently reported that loss of T. brucei aquaglyceroporin 2 (TbAQP2) caused melarsoprol/pentamidine cross-resistance (MPXR) in these parasites and the current study aims to delineate the mechanism by which this occurs.

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Given the pressing need for new antiprotozoal drugs without cross-resistance with current (failing) chemotherapy, we have explored 3-tridecylpyridinium alkaloids (3TPAs), derivatives of viscosamine, as antiparasitic agents. We have developed a simple synthetic route toward viscosamine and related cyclic and linear monomers and oligomers. Evaluation for cytotoxicity on the protozoan parasites Trypanosoma brucei, Leishmania spp.

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African trypanosomiasis is a disease of humans and livestock in many areas south of the Sahara. Resistance to the few existing drugs is a major impediment to the control of these diseases, and we investigated how resistance to the main veterinary drug diminazene aceturate correlates with changes in drug transport in resistant strains. The strain tbat1(-/-), lacking the TbAT1/P2 aminopurine transporter implicated previously in diminazene transport, was adapted to higher levels of diminazene resistance.

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