Enantioselective Nonsteroidal Aromatase Inhibitors Identified through a Multidisciplinary Medicinal Chemistry Approach

Journal of Medicinal Chemistry
2005.0

Abstract

To identify enantioselective nonsteroidal aromatase inhibitors, a multidisciplinary medicinal chemistry approach was pursued. First, our earlier CoMFA model [Bioorg. Med. Chem. 1998,6, 377-388] was extended taking purposely into account previously discovered enantioselective aromatase inhibitors. The 3D QSAR model was then exploited to design chiral ligands, whose configurational assignment was obtained, after HPLC separation, by means of a combination of circular dichroism measurements and time dependent density functional calculations. Finally, the new enantiomeric inhibitors were separately tested to ascertain both their potency against the cytochrome P450 aromatase (CYP19; EC 1.14.14.1), and their selectivity relative to another enzyme of the P450 family. A satisfactory agreement between experimental and predicted data allowed us to assert that a properly built "enantioselective CoMFA model" might constitute a useful tool for addressing enantioselective ligands design.

Knowledge Graph

Similar Paper

Enantioselective Nonsteroidal Aromatase Inhibitors Identified through a Multidisciplinary Medicinal Chemistry Approach
Journal of Medicinal Chemistry 2005.0
An efficient steroid pharmacophore-based strategy to identify new aromatase inhibitors
European Journal of Medicinal Chemistry 2009.0
Pharmacophore modeling strategies for the development of novel nonsteroidal inhibitors of human aromatase (CYP19)
Bioorganic & Medicinal Chemistry Letters 2010.0
A New Class of Nonsteroidal Aromatase Inhibitors:  Design and Synthesis of Chromone and Xanthone Derivatives and Inhibition of the P450 Enzymes Aromatase and 17α-Hydroxylase/C17,20-Lyase
Journal of Medicinal Chemistry 2001.0
Predictive Three-Dimensional Quantitative Structure−Activity Relationship of Cytochrome P450 1A2 Inhibitors
Journal of Medicinal Chemistry 2005.0
Aromatase inhibitors: synthesis, biological activity, and binding mode of azole-type compounds
Journal of Medicinal Chemistry 1993.0
Three-Dimensional Quantitative Structure−Activity Relationships of Cyclo-oxygenase-2 (COX-2) Inhibitors: A Comparative Molecular Field Analysis
Journal of Medicinal Chemistry 2001.0
Fast Three Dimensional Pharmacophore Virtual Screening of New Potent Non-Steroid Aromatase Inhibitors
Journal of Medicinal Chemistry 2009.0
Crystallographic and molecular modeling studies on 3-ethyl-3-(4-pyridyl)piperidine-2,6-dione and its butyl analog, inhibitors of mammalian aromatase. Comparison with natural substrates: prediction of enantioselectivity for N-alkyl derivatives
Journal of Medicinal Chemistry 1990.0
Novel Sulfonanilide Analogs Decrease Aromatase Activity in Breast Cancer Cells: Synthesis, Biological Evaluation, and Ligand-Based Pharmacophore Identification
Journal of Medicinal Chemistry 2008.0