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Published on: June 23, 2019
A Tiny Pocket Packs a Punch: Leveraging Pyridones for the Discovery of CNS-Penetrant Aza-indazole IRAK4 Inhibitors
Philippe N Bolduc1, Magnus Pfaffenbach1, Ryan Evans1
1Department of Medicinal Chemistry;Department of Multiple Sclerosis and Immunology;Drug Metabolism and Pharmacokinetics;Physical Biochemistry, Biogen, 225 Binney Street, Cambridge, Massachusetts 02142, United States.
Abstract:
We herein report the discovery, synthesis, and evolution of a series of indazoles and azaindazoles as CNS-penetrant IRAK4 inhibitors. Described is the use of structure-based and property-based drug design strategically leveraged to guide the property profile of a key series into a favorable property space while maintaining potency and selectivity. Our rationale that led toward functionalities with potency improvements, CNS-penetration, solubility, and favorable drug-like properties is portrayed. In vivo evaluation of an advanced analogue showed significant, dose-dependent modulation of inflammatory cytokines in a mouse model. In pursuit of incorporating a highly engineered bridged ether that was crucial to metabolic stability in this series, significant synthetic challenges were overcome to enable the preparation of the analogues.
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