Pharmaron Beijing Co., Ltd., No.6 Taihe Road, Beijing 100176, China.
WuXi AppTec Co., Ltd., No. 1 Building, #288 FuTe ZhongLu, WaiGaoQiao Free Trade Zone, Shanghai 100176, China.
J Med Chem. 2022 Apr 28;65(8):6001-6016. doi: 10.1021/acs.jmedchem.1c01670. Epub 2022 Mar 3.
3,3-Disubstituted oxetanes have been utilized as bioisosteres for gem-dimethyl and cyclobutane functionalities. We report the discovery of a novel class of oxetane indole-amine 2,3-dioxygenase (IDO1) inhibitors suitable for Q3W (once every 3 weeks) oral and parenteral dosing. A diamide class of IDO inhibitors was discovered through an automated ligand identification system (ALIS). Installation of an oxetane and fluorophenyl dramatically improved the potency. Identification of a biaryl moiety as an unconventional amide isostere addressed the metabolic liability of amide hydrolysis. Metabolism identification (Met-ID)-guided target design and the introduction of polarity resulted in the discovery of potent IDO inhibitors with excellent pharmacokinetic (PK) profiles in multiple species. To enable rapid synthesis of the key oxetane intermediate, a novel oxetane ring cyclization was also developed, as well as optimization of a literature route on kg scale. These IDO inhibitors may enable unambiguous proof-of-concept testing for the IDO1 inhibition mechanism for oncology.
3,3-二取代环氧乙烷已被用作偕二甲基和环丁烷结构的生物等排体。我们报告了一类新型的环氧乙烷吲哚胺 2,3-双加氧酶(IDO1)抑制剂的发现,这类抑制剂适合每 3 周(Q3W)口服和肠胃外给药。通过自动化配体识别系统(ALIS)发现了一类二酰胺类 IDO 抑制剂。引入环氧乙烷和氟苯基可显著提高其效力。鉴定出一个联芳基部分作为非常规酰胺等排体,解决了酰胺水解的代谢问题。代谢鉴定(Met-ID)指导的靶标设计和引入极性导致了在多种物种中具有良好药代动力学(PK)特征的有效 IDO 抑制剂的发现。为了能够快速合成关键的环氧乙烷中间体,还开发了一种新型的环氧乙烷环化反应,以及公斤级文献路线的优化。这些 IDO 抑制剂可能为 IDO1 抑制机制在肿瘤学中的明确概念验证测试提供了可能。