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Bispecific targeting of CHI3L1 and PD-1 as a therapeutic strategy for pulmonary fibrosis
Han-Seok Jeong, Takayuki Sadanaga, Joyce H. Lee, Suchitra Kamle, Bing Ma, Yang Zhou, Sung Jae Shin, Jack A. Elias, Chun Geun Lee
Han-Seok Jeong, Takayuki Sadanaga, Joyce H. Lee, Suchitra Kamle, Bing Ma, Yang Zhou, Sung Jae Shin, Jack A. Elias, Chun Geun Lee
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Research Article Immunology Pulmonology

Bispecific targeting of CHI3L1 and PD-1 as a therapeutic strategy for pulmonary fibrosis

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Abstract

CHI3L1, a chitinase-like protein, is implicated in pulmonary fibrosis, yet its mechanisms are incompletely understood. We demonstrated that CHI3L1 coordinates profibrotic macrophage activation and invasive myofibroblast differentiation, and their crosstalk. In vitro, CHI3L1 drove M2-like macrophage polarization with increased CD163, CD206, and PD-L1, and amplified TGF-β1–induced fibroblast responses, including myofibroblast transformation, migration, and invasion. Mechanistically, CHI3L1 enhanced TGF-β1 signaling through SMAD, AKT, and ERK pathways, and PD-L1 was required for CHI3L1/TGF-β1–driven myofibroblast transformation. Coculture studies further demonstrated the ability of CHI3L1 to induce profibrotic macrophage activation that enhanced myofibroblast transformation mediated via a CD44/PD-L1 axis. In vivo, following bleomycin challenge, CHI3L1-transgenic mice exhibited increased PD-L1+ M2 macrophages, PD-L1+PDGFRα+ fibroblasts, and PD-1+ immune cells compared with WT controls. Therapeutically, combined anti-CHI3L1 and anti-PD-1 antibodies, or a bispecific anti-CHI3L1–anti-PD-1 antibody, produced greater antifibrotic efficacy than monotherapy. These findings demonstrate crosstalk between CHI3L1 and the PD-1/PD-L1 pathway that promotes profibrotic macrophage activation and invasive fibroblast differentiation and support dual targeting of CHI3L1 and PD-1/PD-L1 as a promising therapeutic strategy for pulmonary fibrosis.

Authors

Han-Seok Jeong, Takayuki Sadanaga, Joyce H. Lee, Suchitra Kamle, Bing Ma, Yang Zhou, Sung Jae Shin, Jack A. Elias, Chun Geun Lee

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Figure 8

Increased CHI3L1 and PD-1 expression and spatial interaction between CHI3L1+ macrophages and CD44+ fibroblasts in IPF lungs.

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Increased CHI3L1 and PD-1 expression and spatial interaction between CHI...
(A) Reanalysis of the Lung Tissue Research Consortium microarray dataset (NCBI GEO GSE47460) showing significantly elevated CHI3L1 and PDCD1 (PD-1) expression in IPF lungs. (B) Coexpression of CHI3L1 and PDCD1 inversely correlated with pulmonary function indices, percentage predicted FVC, and DLCO. (C) Mean expression of CHI3L1 and PDCD1 progressively increased from healthy controls to IPF patients and was further stratified by disease severity. Pairwise comparisons showed significant differences between control versus stage I, stage I versus stage II+III, and control versus stage II+III. (D) Spatial transcriptomic dataset (6 controls and 5 IPF) revealed higher interaction ratios between CHI3L1+ macrophages and CD44+ fibroblasts within 20 μm in IPF lungs (P < 0.05 by Mann-Whitney U test). For the box-and-whisker plots in panels A and C, boxes represent the interquartile range (25th–75th percentile), center lines indicate the median, and whiskers extend to the most extreme values within 1.5 × the interquartile range. Individual data points are overlaid where shown. In panel D, violin plots depict the distribution of the data, with embedded box plots showing the interquartile range and median; individual data points are shown by the overlaid swarm plot.

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