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Truncated S-MGBs: towards a parasite-specific and low aggregation chemotype.

Daniel P BrookeLeah M C McGeeFederica GiordaniJasmine M CrossAbedawn I KhalafCraig IrvingKirsten GillingwaterCraig D ShawKatharine C CarterMichael P BarrettColin J SucklingFraser J Scott
Published in: RSC medicinal chemistry (2021)
This paper describes the design and synthesis of Strathclyde minor groove binders (S-MGBs) that have been truncated by the removal of a pyrrole ring in order to mimic the structure of the natural product, disgocidine. S-MGBs have been found to be active against many different organisms, however, selective antiparasitic activity is required. A panel of seven truncated S-MGBs was prepared and the activities examined against a number of clinically relevant organisms including several bacteria and parasites. The effect of the truncation strategy on S-MGB aggregation in aqueous environment was also investigated using 1H inspection and DOSY experiments. A lead compound, a truncated S-MGB, which possesses significant activity only against trypanosomes and Leishmania has been identified for further study and was also found to be less affected by aggregation compared to its full-length analogue.
Keyphrases
  • plasmodium falciparum
  • gram negative
  • ionic liquid
  • multidrug resistant
  • atomic force microscopy
  • mass spectrometry
  • toxoplasma gondii