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通过利用非经典相互作用发现强效、口服生物可利用的吡啶 N-氧化物型因子 Xa 抑制剂。

Discovery of Potent and Orally Bioavailable Pyridine N-Oxide-Based Factor XIa Inhibitors through Exploiting Nonclassical Interactions.

机构信息

Janssen Research & Development, L.L.C., 1400 McKean Road, Spring House, Pennsylvania 19477-0776, United States.

出版信息

J Med Chem. 2022 Aug 11;65(15):10419-10440. doi: 10.1021/acs.jmedchem.2c00442. Epub 2022 Jul 21.

Abstract

Activated factor XI (FXIa) inhibitors are promising novel anticoagulants with low bleeding risk compared with current anticoagulants. The discovery of potent FXIa inhibitors with good oral bioavailability has been challenging. Herein, we describe our discovery effort, utilizing nonclassical interactions to improve potency, cellular permeability, and oral bioavailability by enhancing the binding while reducing polar atoms. Beginning with literature-inspired pyridine N-oxide-based FXIa inhibitor , the imidazole linker was first replaced with a pyrazole moiety to establish a polar C-H···water hydrogen-bonding interaction. Then, structure-based drug design was employed to modify lead molecule in the P1' and P2' regions, with substituents interacting with key residues through various nonclassical interactions. As a result, a potent FXIa inhibitor ( = 0.17 nM) was discovered. This compound demonstrated oral bioavailability in preclinical species (rat 36.4%, dog 80.5%, and monkey 43.0%) and displayed a dose-dependent antithrombotic effect in a rabbit arteriovenous shunt model of thrombosis.

摘要

活化因子 XI(FXIa)抑制剂是一种很有前途的新型抗凝剂,与目前的抗凝剂相比,出血风险较低。发现具有良好口服生物利用度的有效 FXIa 抑制剂一直具有挑战性。在此,我们描述了我们的发现工作,利用非经典相互作用来提高效力、细胞通透性和口服生物利用度,同时通过增强结合来减少极性原子。从受文献启发的吡啶 N-氧化物为基础的 FXIa 抑制剂开始,首先将咪唑键替换为吡唑部分,以建立极性 C-H···水分子氢键相互作用。然后,采用基于结构的药物设计来修饰先导化合物在 P1'和 P2'区域的结构,取代基通过各种非经典相互作用与关键残基相互作用。结果发现了一种有效的 FXIa 抑制剂 ( = 0.17 nM)。该化合物在临床前物种(大鼠 36.4%、狗 80.5%和猴子 43.0%)中具有口服生物利用度,并在兔动静脉分流模型的血栓形成中表现出剂量依赖性抗血栓作用。

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