1. Academic Validation
  2. Discovery of New Chemical Entities for Old Targets: Insights on the Lead Optimization of Chromone-Based Monoamine Oxidase B (MAO-B) Inhibitors

Discovery of New Chemical Entities for Old Targets: Insights on the Lead Optimization of Chromone-Based Monoamine Oxidase B (MAO-B) Inhibitors

  • J Med Chem. 2016 Jun 23;59(12):5879-93. doi: 10.1021/acs.jmedchem.6b00527.
Joana Reis 1 Fernando Cagide 1 Daniel Chavarria 1 Tiago Silva 1 Carlos Fernandes 1 Alexandra Gaspar 1 Eugenio Uriarte 2 Fernando Remião 3 Stefano Alcaro 4 Francesco Ortuso 4 Fernanda Borges 1
Affiliations

Affiliations

  • 1 CIQUP/Department of Chemistry and Biochemistry, Faculty of Sciences, University of Porto , 4169-007, Porto, Portugal.
  • 2 Department of Organic Chemistry, Faculty of Pharmacy, University of Santiago de Compostela , 15782 Santiago de Compostela, Spain.
  • 3 UCIBIO-REQUIMTE, Laboratory of Toxicology, Department of Biological Sciences, Faculty of Pharmacy, University of Porto , 4050-313, Porto, Portugal.
  • 4 Department of "Scienze della Vita", University "Magna Græcia" of Catanzaro , 88100 Catanzaro, Italy.
Abstract

The discovery of new chemical entities endowed with potent, selective, and reversible Monoamine Oxidase B inhibitory activity is a clinically relevant subject. Therefore, a small library of chromone derivatives was synthesized and screened toward human Monoamine Oxidase isoforms (hMAO-A and hMAO-B). The structure-activity relationships studies strengthen the importance of the amide spacer and the direct linkage of carbonyl group to the γ-pyrone ring, along with the presence of meta and para substituents in the exocyclic ring. The most potent MAO-B inhibitors were N-(3'-chlorophenyl)-4-oxo-4H-chromene-3-carboxamide (20) (IC50 = 403 pM) and N-(3',4'-dimethylphenyl)-4-oxo-4H-chromene-3-carboxamide (27) (IC50 = 669 pM), acting as competitive and noncompetitive reversible inhibitors, respectively. Computational docking studies provided insights into enzyme-inhibitor interactions and a rationale for the observed selectivity and potency. Compound 27 stands out due to its favorable toxicological profile and physicochemical properties, which pointed toward blood-brain barrier permeability, thus being a valid candidate for subsequent animal studies.

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