Targeting progranulin alleviated silica particles-induced pulmonary inflammation and fibrosis via decreasing Il-6 and Tgf-β1/Smad

纤维化 炎症 SMAD公司 肺纤维化 Smad2蛋白 转化生长因子 医学 癌症研究 内科学
作者
Mengyuan Zhao,Mengzhu Wang,Xuxi Chen,Yujie Gao,Qing Chen,Liqun Wang,Qixue Bao,Dianjun Sun,Wenjuan Du,Yinghao Xu,Linshen Xie,Xia Jiang,Ling Zhang,Lijun Peng,Ben Zhang,Yuqin Yao
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:465: 133199-133199
标识
DOI:10.1016/j.jhazmat.2023.133199
摘要

Long term exposure to silica particles leads to various diseases, among which silicosis is of great concern. Silicosis is an interstitial lung disease caused by inhalation of silica particles in production environments. However, the mechanisms underlying silicosis remains unclear. Our previous studies revealed that progranulin (Pgrn) promoted the expression of pro-inflammatory factors in alveolar macrophages treated with silica particles and the secretion of extracellular matrix of pulmonary fibroblasts. Nevertheless, the role of Pgrn in silica particles-induced silicosis in vivo was unknown. This study found that silica particles increased Pgrn expression in silicosis patients. Pgrn deficiency reduced lung inflammation and fibrosis in silica particles-induced silicosis mouse models. Subsequently, based on transcriptional sequencing and interleukin (Il) −6 knockout mouse models, results demonstrated that Pgrn deficiency might decrease silicosis inflammation by reducing the production of Il-6, thereby modulating pulmonary fibrosis in the early stage of silicosis mouse models. Furthermore, another mechanism through which Pgrn deficiency reduced fibrosis in silicosis mouse models was the regulation of the transforming growth factor (Tgf) -β1/Smad signaling pathway. Conclusively, Pgrn contributed to silicosis inflammation and fibrosis induced by silica particles, indicating that Pgrn could be a promising therapeutic target.
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