Optimization of an Imidazo[1,2- a]pyridine Series to Afford Highly Selective Type I1/2 Dual Mer/Axl Kinase Inhibitors with In Vivo Efficacy

优化咪唑并[1,2- a]吡啶系列以获得具有体内功效的高选择性 I1/2 型双 Mer/Axl 激酶抑制剂

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作者:William McCoull, Scott Boyd, Martin R Brown, Muireann Coen, Olga Collingwood, Nichola L Davies, Ann Doherty, Gary Fairley, Kristin Goldberg, Elizabeth Hardaker, Guang He, Edward J Hennessy, Philip Hopcroft, George Hodgson, Anne Jackson, Xiefeng Jiang, Ankur Karmokar, Anne-Laure Lainé, Nicola Lindsay

Abstract

Inhibition of Mer and Axl kinases has been implicated as a potential way to improve the efficacy of current immuno-oncology therapeutics by restoring the innate immune response in the tumor microenvironment. Highly selective dual Mer/Axl kinase inhibitors are required to validate this hypothesis. Starting from hits from a DNA-encoded library screen, we optimized an imidazo[1,2-a]pyridine series using structure-based compound design to improve potency and reduce lipophilicity, resulting in a highly selective in vivo probe compound 32. We demonstrated dose-dependent in vivo efficacy and target engagement in Mer- and Axl-dependent efficacy models using two structurally differentiated and selective dual Mer/Axl inhibitors. Additionally, in vivo efficacy was observed in a preclinical MC38 immuno-oncology model in combination with anti-PD1 antibodies and ionizing radiation.

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