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Identification and Biological Evaluation of a Potent and Selective JAK1 Inhibitor for the Treatment of Pulmonary Fibrosis. | LitMetric

AI Article Synopsis

  • - Janus kinase 1 (JAK1) is essential in controlling inflammation and fibrosis through the JAK/STAT signaling pathway, making it a potential target for related diseases.
  • - A new compound, 4-(((2,4)-1-(4-trifluoromethyl)-2-methylpiperidin-4-yl)amino)--methyl-1-pyrrolo[2,3-]pyridine-5-carboxamide, has been identified as a highly potent JAK1 inhibitor, with a very low IC value of 0.044 nM and significant selectivity for JAK1 over other kinases.
  • - In mouse models of fibrosis, this compound effectively

Article Abstract

Janus kinase 1 (JAK1) plays a pivotal role in regulating inflammation and fibrosis via the JAK/STAT signaling pathway, making it a promising target for associated diseases. In this study, we explored the modification of an -methyl 1-pyrrolo[2,3-]pyridine-5-carboxylate core, leading to the identification of 4-(((2,4)-1-(4-trifluoromethyl)-2-methylpiperidin-4-yl)amino)--methyl-1-pyrrolo[2,3-]pyridine-5-carboxamide () as a highly potent and selective JAK1 inhibitor. Compound exhibited an impressive IC value of 0.044 nM for JAK1 and demonstrated remarkable selectivity of 382-fold, 210-fold, and 1325-fold specificity over JAK2, JAK3, and TYK2, respectively. The kinase panel assays further confirmed its specificity, and cell-based experiments established its efficacy in inhibiting JAK1-STAT phosphorylation in human L-132 or SK-MES-1 cells. Pharmacokinetic studies revealed that compound boasts an oral bioavailability exceeding 36%. In a bleomycin-induced fibrosis mouse model, compound significantly reduced STAT3 phosphorylation, resulting in improvement in body weight and reduced collagen deposition, all achieved without significant side effects.

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http://dx.doi.org/10.1021/acs.jmedchem.3c01712DOI Listing

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