Cyclic hydroxamic acids can be viewed as effective binders of soluble iron and can therefore be useful moieties for employing in compounds to treat iron overload disease. Alternatively, they are analogs of bacterial siderophores (iron-scavenging metabolites) and can find utility in designing antibiotic constructs for targeted delivery. An earlier described three-component variant of the Castagnoli—Cushman reaction of homophthalic acid (via in situ cyclodehydration to the respective anhydride) was extended to involve hydroxylamine in lieu of the amine component of the reaction. Using hydroxylamine acetate and O-benzylhydroxylamine was key to the success of this transformation due to greater solubility of the reagents in refluxing toluene (compared to hydrochloride salt). The developed protocol was found suitable for multigram-scale syntheses of N-hydroxy- and N-(benzyloxy)tetrahydroisoquinolonic acids. The cyclic hydroxamic acids synthesized in the newly developed format have been tested and shown to be efficient ligands for Fe 3+ , which makes them suitable candidates for the above-mentioned applications.

Original languageEnglish
Article number864
Number of pages15
JournalMolecules
Volume24
Issue number5
DOIs
StatePublished - 1 Mar 2019

    Research areas

  • Azeotropic distillation, Castagnoli–Cushman reaction, Cyclic hydroxamic acids, Cyclodehydration, Homophthalic acid, Hydroxylamine acetate, Iron complexation, Siderophores/chemistry, Hydroxamic Acids/chemistry, Coordination Complexes/chemical synthesis, Ferric Compounds/chemical synthesis, BACTERIAL SIDEROPHORES, ANALOGS, ONE-POT SYNTHESIS, cyclodehydration, cyclic hydroxamic acids, hydroxylamine acetate, homophthalic acid, Castagnoli-Cushman reaction, azeotropic distillation, iron complexation, CHEMISTRY, CASTAGNOLI-CUSHMAN REACTION

    Scopus subject areas

  • Drug Discovery
  • Analytical Chemistry
  • Chemistry (miscellaneous)
  • Molecular Medicine
  • Physical and Theoretical Chemistry
  • Pharmaceutical Science
  • Organic Chemistry

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