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March 22, 2026Journal of Medicinal Chemistry1 citations

Discovery of YYSW001: A Highly Selective, Orally Bioavailable JAK1 Inhibitor Achieving Efficacy under a Moderate-Inhibition Strategy with Improved Preclinical Tolerability

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KHKaiyong HuYWYezhi WangPXPengfei Xu

Key Points

  • The research aims to develop a selective JAK1 inhibitor that minimizes adverse effects while maintaining therapeutic efficacy against inflammation.
  • Design and optimize imidazopyrrolopyridines to find effective JAK1 inhibitors
  • Conduct pharmacokinetic evaluation of YYSW001 to assess oral bioavailability
  • Test efficacy of YYSW001 in rat models for collagen-induced and adjuvant-induced arthritis
  • YYSW001 shows IC50 of 6 nM for JAK1 with over 50-fold selectivity against JAK2
  • Exhibits 61.8% oral bioavailability
  • Demonstrates therapeutic efficacy comparable to upadacitinib while reducing JAK2-related side effects.

Abstract

Janus kinase 1 (JAK1)-preferential inhibition has emerged as a promising approach to maintain anti-inflammatory efficacy while minimizing hematopoietic adverse effects attributed to JAK2 blockade. Guided by a design concept aiming for sufficient JAK1 target engagement without excessive pathway suppression, we designed and optimized a series of imidazopyrrolopyridines to identify compound 40 (YYSW001). YYSW001 exhibited potent JAK1 inhibition (IC50 = 6 nM) with >50-fold selectivity over JAK2 and strong cellular activity. Pharmacokinetic evaluation revealed 61.8% oral bioavailability. In rat collagen-induced arthritis (CIA) and adjuvant-induced arthritis (AIA) models, YYSW001 demonstrated therapeutic efficacy comparable to upadacitinib. Consistent with its JAK1/JAK2 selectivity, YYSW001 reduced JAK2-associated liabilities, including hematologic dysfunction and weight loss, relative to upadacitinib. Overall, YYSW001 represents a preferential JAK1 inhibitor with a favorable efficacy-tolerability profile, which is currently undergoing preclinical development.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/69bf86ecf665edcd009e9145https://doi.org/10.1021/acs.jmedchem.5c03183
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