Yifei Decoction Regulates the NGF/TRKA/PI3K/AKT Signaling Axis to Inhibit the Epithelial–Mesenchymal Transformation and Proliferation of Pulmonary Epithelial Cells in Bleomycin‐Induced Pulmonary Fibrogenesis
Lijuan Chen, Chengzhong Lan, Xiangli Deng, Mei Wu, Mei Shao, Mei Yang, Xinwen Ma, Fen Huang, Haiyin Wu

TL;DR
Yifei Decoction may help treat lung fibrosis by targeting a specific signaling pathway that reduces cell changes and growth linked to the disease.
Contribution
The study reveals a novel mechanism by which Yifei Decoction inhibits pulmonary fibrosis through the NGF/TRKA/PI3K/AKT signaling axis.
Findings
YFT reduced lung injury and fibrosis in a mouse model of IPF.
YFT inhibited EMT and cell proliferation by downregulating the NGF/TRKA/PI3K/AKT pathway.
TRKA overexpression reversed the beneficial effects of YFT, confirming its role in the mechanism.
Abstract
It was important to find better therapeutic drugs for idiopathic pulmonary fibrosis (IPF), and in our previous study, Yifei decoction (YFT) alleviated IPF. A deeper understanding of its mechanisms of action could aid in the development of novel treatment strategies. We established an IPF mouse model by administering bleomycin (BLM), followed by treatment with YFT. Histopathological analysis of lung tissue was conducted to evaluate the effects of YFT, along with transcriptomic profiling to identify key regulatory molecules involved in its therapeutic action. Immunofluorescence staining was performed for TRKA and surfactant protein C (SP‐C) in IPF lung slices. A549 cells were induced with TGF‐β1 to assess the effect of YFT on alveolar epithelial cells, and cells overexpressing TRKA were constructed. Western blotting analysis was performed to detect EMT‐ and PI3K/AKT pathway‐related…
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Taxonomy
TopicsInterstitial Lung Diseases and Idiopathic Pulmonary Fibrosis · Neonatal Respiratory Health Research · Delphi Technique in Research
