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Key structural requirements of benzamide derivatives for histone deacetylase inhibition: design, synthesis and biological evaluation.

Narges CheshmazarMaryam Hamzeh-MivehroudSalar HemmatiHoda AbolhasaniFatemeh HeidariHojjatollah Nozad CharoudehMatthes ZessinMike SchutkowskiWolfgang SipplSiavoush Dastmalchi
Published in: Future medicinal chemistry (2024)
Background: Histone deacetylase inhibitors (HDACIs) are important as anticancer agents. Objective: This study aimed to investigate some key structural features of HDACIs via the design, synthesis and biological evaluation of novel benzamide-based derivatives. Methods: Novel structures, designed using a molecular modification approach, were synthesized and biologically evaluated. Results: The results indicated that a subset of molecules with CH 3 /NH 2 at R 2 position possess selective antiproliferative activity. However, only those with an NH 2 group showed HDACI activity. Importantly, the shorter the molecule length, the stronger HDACI. Among all, 7j was the most potent HDAC1-3 inhibitor and antiproliferative compound. Conclusion: The results of the present investigation could provide valuable structural knowledge applicable for the development of the HDACIs and benzamide-based antiproliferative agents in the future.
Keyphrases
  • histone deacetylase
  • room temperature
  • healthcare
  • high resolution
  • structure activity relationship
  • ionic liquid
  • single molecule