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Updated: Sep 20, 2025

Measurement of Chitinase Activity in Biological Samples
Published on: August 22, 2019
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.
Abstract:
Pulmonary fibrosis is a devastating lung disease with few therapeutic options. CHIT1 (chitinase 1), an 18 glycosyl hydrolase family member, contributes to the pathogenesis of pulmonary fibrosis through the regulation of TGF-β (transforming growth factor-β) signaling and effector function. Therefore, CHIT1 is a potential therapeutic target for pulmonary fibrosis. This study aimed to identify and characterize a druggable CHIT1 inhibitor with strong antifibrotic activity and minimal toxicity for therapeutic application to pulmonary fibrosis. Extensive screening of small molecule libraries identified the aminoglycoside antibiotic kasugamycin (KSM) as a potent CHIT1 inhibitor. Elevated concentrations of CHIT1 were detected in the lungs of patients with pulmonary fibrosis. In in vivo bleomycin- and TGF-β-stimulated murine models of pulmonary fibrosis, KSM showed impressive antifibrotic effects in both preventive and therapeutic conditions. In vitro studies also demonstrated that KSM inhibits fibrotic macrophage activation, fibroblast proliferation, and myofibroblast transformation. Null mutation of TGFBRAP1 (TGF-β-associated protein 1), a recently identified CHIT1 interacting signaling molecule, phenocopied antifibrotic effects of KSM in in vivo lungs and in vitro fibroblasts responses. KSM inhibits the physical association between CHIT1 and TGFBRAP1, suggesting that the antifibrotic effect of KSM is mediated through regulation of TGFBRAP1, at least in part. These studies demonstrate that KSM is a novel CHIT1 inhibitor with a strong antifibrotic effect that can be further developed as an effective and safe therapeutic drug for pulmonary fibrosis.
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.

