Kasugamycin Is a Novel Chitinase 1 Inhibitor with Strong Antifibrotic Effects on Pulmonary Fibrosis

Jae-Hyun Lee1, Chang-Min Lee2, Joyce H Lee2

  • 1Division of Allergy and Immunology, Department of Internal Medicine, Yonsei University College of Medicine, Seoul, South Korea.

Insights

Kasugamycin (KSM) effectively inhibits chitinase 1 (CHIT1), a key factor in pulmonary fibrosis. This study identifies KSM as a promising therapeutic candidate for treating this devastating lung disease.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Pulmonology

Background:

  • Pulmonary fibrosis is a severe lung condition with limited treatment options.
  • Chitinase 1 (CHIT1) plays a crucial role in pulmonary fibrosis pathogenesis by regulating transforming growth factor-beta (TGF-β) signaling.
  • CHIT1 represents a potential therapeutic target for pulmonary fibrosis.

Purpose of the Study:

  • To identify and characterize a potent CHIT1 inhibitor with significant antifibrotic activity and low toxicity for pulmonary fibrosis treatment.
  • To evaluate the therapeutic potential of kasugamycin (KSM) as a CHIT1 inhibitor.

Main Methods:

  • Small molecule library screening to identify CHIT1 inhibitors.
  • In vivo studies using bleomycin- and TGF-β-stimulated murine models of pulmonary fibrosis.
  • In vitro assays to assess KSM's effects on fibrotic cells and signaling pathways.
  • Analysis of the interaction between CHIT1 and TGFBRAP1.

Main Results:

  • Kasugamycin (KSM) was identified as a potent CHIT1 inhibitor.
  • Elevated CHIT1 levels were observed in the lungs of pulmonary fibrosis patients.
  • KSM demonstrated significant antifibrotic effects in both preventive and therapeutic settings in vivo.
  • KSM inhibited fibrotic macrophage activation, fibroblast proliferation, and myofibroblast differentiation in vitro.
  • KSM disrupts the CHIT1-TGFBRAP1 interaction, suggesting a mechanism for its antifibrotic action.

Conclusions:

  • Kasugamycin (KSM) is a novel CHIT1 inhibitor with potent antifibrotic properties.
  • KSM shows promise as a safe and effective therapeutic agent for pulmonary fibrosis.
  • The antifibrotic effects of KSM are, at least partly, mediated by regulating TGFBRAP1 signaling.

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