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BCL9 inhibition promotes fibroblast lipogenesis by regulating macrophage–fibroblast interactions to attenuate pulmonary fibrosis

Signal transduction and targeted therapy. 2026-08; 
Wenjie Wang, Yuan Zhang, Fenglian He, Li Sun, Huiyu Li, Rongchen Liu, Guanglin Zhong, Ling Zhang, Anqi Li, Mei Feng, Yuxuan Dong, Xiaoxuan Lu, Xiaojin Wang, Yuan Si, Yejun Wu, Mengmeng Zhao, Dafu Zhu, Zhuyi Xi, Jian Chen, Jing Chen, Ming-Wei Wang, Di Zhu, Likun Gong, Bingshun Wang
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Recombinant Proteins . To induce macrophage polarization, cells were treated with 100ng/ml LPS (MERCK, Darmstadt, Germany L2630)+20ng/mL IFN-γ (GenScript, Nanjing, China, Z02916) to polarized towards M1 phenotype, and 40ng/mL IL-4 (GenScript, Nanjing, China, Z02996) to polarized towards M2 phenotype. Get A Quote

摘要

Idiopathic pulmonary fibrosis (IPF) is a progressive and fatal interstitial lung disease with an urgent need for novel therapeutic strategies. M2 macrophage-derived TGF-β1 promotes fibroblast myogenesis, contributing to IPF pathogenesis. Targeting macrophage polarization and fibroblast function thus represents an effective therapeutic approach for treating IPF. Here, we identify B-cell lymphoma 9 (BCL9) as a key upstream regulator implicated in IPF pathogenesis. We demonstrate that BCL9 drives the macrophage M2 program through the MerTK-ERK-SPP1 axis. Notably, pharmacological inhibition of BCL9 with our novel peptide, hsBCL9Z96, effectively attenuates pulmonary fibrosis by reprogramming macrophage-fibroblast c... More

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