旁分泌信号
肺纤维化
肌成纤维细胞
医学
纤维化
特发性肺纤维化
肺
癌症研究
病理
上皮-间质转换
干细胞
转分化
免疫学
细胞
电池类型
信号转导
间质性肺病
过渡(遗传学)
成纤维细胞
单核细胞
病态的
毛花素
脯氨酰内肽酶
肺动脉高压
作者
Zhou-Hang Zhang,Guan‐Lin Guo,Xiao‐Hui Guan,Min Hu,Qi‐ming Huang,Ding-wen Guo,Hao‐Cheng Gu,Youqiong Zhuo,Ning Li,Hong‐Bo Xin,Ke-Yu Deng
摘要
Human Idiopathic Pulmonary Fibrosis (IPF) is a progressive and fatal lung disease with unknown etiology and lacking efficient treatments. Here, we reported that human urine stem cells (hUSCs) significantly alleviated pulmonary fibrosis via inhibiting macrophage-myofibroblast transition (MMT), which was identified as a pivotal pathological process in IPF, with the strong interaction among infiltrated macrophages, damaged alveolar epithelial cells, and myofibroblasts via single-nucleus RNA sequencing data analysis and co-immunostaining. In addition, hUSCs significantly alleviated pulmonary fibrosis by attenuating alveolar epithelial cell damage, reducing monocyte-derived macrophage infiltration, and suppressing MMT in the bleomycin-induced pulmonary fibrosis mouse model. Furthermore, we demonstrated hUSCs inhibited monocyte recruitment and MMT via paracrine actions in the macrophage-alveolar epithelial cell co-culture system. Mechanistically, DKK1, which was highly secreted by hUSCs and identified by Venn diagram analysis between the luminex assay in supernatants of THP1 treated with hUSC-CM and antibody array of hUSC-CM, might contribute to preventing MMT via suppressing the Wnt/β-catenin signaling pathway in macrophages. In summary, hUSCs exerted multifaceted protective effects against pulmonary fibrosis, at least in part through paracrine mechanisms involving DKK1 and its modulation of Wnt/β-catenin-associated fibrotic responses in MMT. Therefore, hUSCs might provide a potential therapeutic strategy for IPF clinically.
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