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Optimization of Potent, Efficacious, Selective and Blood–Brain Barrier Penetrating Inhibitors Targeting EGFR Exon20 Insertion Mutations

Authors :
Thomson, Clare
Braybrooke, Erin
Colclough, Nicola
Davies, Nichola L.
Floc’h, Nicolas
Greenwood, Ryan
Guérot, Carine
Hargreaves, David
Johnstrom, Peter
Khurana, Puneet
Kostomiris, Demetrios H.
Li, Songlei
Lister, Andrew
Lorthioir, Olivier
Martin, Scott
McCoull, William
McLean, Neville J.
McWilliams, Lisa
Orme, Jonathan P.
Packer, Martin J.
Pearson, Stuart
Swaih, Aisha M.
Tentarelli, Sharon
Tucker, Michael J.
Ward, Richard A.
Wilkinson, Stephen
Winlow, Poppy
Wood, Isabel L.
Source :
Journal of Medicinal Chemistry; October 2024, Vol. 67 Issue: 19 p17738-17773, 36p
Publication Year :
2024

Abstract

Herein, we report the optimization of a series of epidermal growth factor receptor (EGFR) Exon20 insertion (Ex20Ins) inhibitors using structure-based drug design (SBDD), leading to the discovery of compound 28, a potent and wild type selective molecule, which demonstrates efficacy in multiple EGFR Ex20Ins xenograft models and blood–brain barrier penetration in preclinical species. Building on our earlier discovery of an in vivoprobe, SBDD was used to design a novel bicyclic core with a lower molecular weight to facilitate blood–brain barrier penetration. Further optimization including strategic linker replacement and diversification of the ring system interacting with the c-helix enabled photolytic and metabolic stability improvements. Together with refinement of molecular properties important for achieving high brain exposure, including molecular weight, H-bonding, and polarity, 28was identified.

Details

Language :
English
ISSN :
00222623 and 15204804
Volume :
67
Issue :
19
Database :
Supplemental Index
Journal :
Journal of Medicinal Chemistry
Publication Type :
Periodical
Accession number :
ejs67520330
Full Text :
https://doi.org/10.1021/acs.jmedchem.4c01792