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Sadanaga, T.

Publications and source records attributed to Sadanaga, T..

2 recordsLinked to original sources

Bispecific Targeting of CHI3L1 and PD-1/PD-L1 Axis as a Novel Therapeutic Strategy for Idiopathic Pulmonary Fibrosis

CHI3L1, a chitinase-like protein, plays a key role in the pathogenesis of pulmonary fibrosis, though the precise mechanisms remain unclear. This study explores how CHI3L1 regulates profibrotic macrophage activation and invasive myofibroblast differentiation and their interactions. In vitro, CHI3L1 induced profibrotic M2 macrophage activation and differentiation marked by increased expression of CD163, CD206, and PD-L1. CHI3L1 also enhanced TGF-{beta}1 effects on lung fibroblasts including myofibroblast transformation, migration and tissue invasion. Mechanistically, CHI3L1 increased TGF-{beta}1-stimulation of Smad, Akt and Erk signaling and PD-L1 played a significant role in TGF-{beta}1/CHI3L1-stimulated myofibroblast transformation. Coculture experiment further confirmed the ability of CHI3L1 to induce profibrotic macrophage activation that enhanced myofibroblast transformation mediated via a CD44-PD-L1 axis. Following in vivo bleomycin challenge, CHI3L1 transgenic mice exhibited significantly higher levels of PD-L1+ M2 macrophages, PD-L1+/PDGFR+ fibroblasts and increased numbers of PD-1+ and CD45+/PD-1+ cells compared to wild-type controls. Notably, combined treatment with anti-CHI3L1 and anti-PD-1 antibodies, or a bispecific anti-CHI3L1-anti-PD-1 antibody, resulted in greater inhibition of bleomycin-induced fibrosis than either antibody alone. These findings suggest that there is a stimulatory interaction between CHI3L1 and the PD-1/PD-L1 axis in promoting profibrotic macrophage activation and invasive fibroblast differentiation. The results also highlight the potential of bispecific targeting of CHI3L1 and the PD-1/PD-L1 pathway as an effective therapeutic approach for pulmonary fibrosis.

immunology↗

Kasugamycin inhibits melanoma lung metastasis and regulates CHI3L1-driven M2-like tumor-associated macrophage differentiation

CHI3L1, a chitinase-like protein, is a potent immune modulator involved in various diseases, including lung cancer. While recent studies have demonstrated that kasugamycin (KSM) is a pan-chitinase inhibitor with strong anti-fibrotic activity, its effects on specific chitinase-like proteins remain undefined. This study shows that KSM effectively abrogates CHI3L1-stimulated cellular signaling and bioactivities. In a B16/F10 melanoma lung metastasis model, where CHI3L1 plays a critical role, KSM treatment significantly reduced melanoma lung metastasis dose-dependently. The anti-tumor effect of KSM was found to be CHI3L1-specific, as CHI3L1 overexpression enhanced melanoma lung colony formation, which was effectively blocked by KSM. In melanoma-challenged lungs, KSM treatment significantly reduced the elevation of M2 macrophages expressing CD206, CD163, and PD-L1. In studies using human monocytic THP-1 cells, CHI3L1 promoted M2 macrophage differentiation, which KSM significantly suppressed. Bulk RNA sequencing of differentiated macrophages revealed that CHI3L1 highly induced the expression of epidermal growth factor receptor (EGFR), and this induction was counter-regulated by KSM, and CHI3L1-driven M2 macrophage activation was reduced with EGFR blocker treatment. These findings reveal a novel anti-tumor mechanism of KSM, which inhibits M2-like tumor-associated macrophage differentiation, potentially through the CHI3L1-EGFR axis.

immunology↗