hucMSCs Treatment Ameliorated Pulmonary Fibrosis via Downregulating the circFOXP1-HuR-EZH2/STAT1/FOXK1 Autophagic Axis

Author:

Li Ruiqiong1,Zhang Haitong2,Zhang Jinjin3,Ji Yunxia2,Liu Wenbo3,Liu Weili2,Wang Meirong3,Lv Changjun2,Song Xiaodong4,Li Hongbo2,Li Minge1ORCID

Affiliation:

1. Department of Clinical Nursing, Binzhou Medical University Hospital, Binzhou Medical University , Binzhou , People’s Republic of China

2. Department of Respiratory and Critical Care Medicine, Binzhou Medical University Hospital, Binzhou Medical University , Binzhou , People’s Republic of China

3. Medical Research Center, Binzhou Medical University , Yantai , People’s Republic of China

4. Department of Cellular and Genetic Medicine, School of Pharmaceutical Sciences, Binzhou Medical University , Yantai , People’s Republic of China

Abstract

Abstract This study was performed to determine the effect of human umbilical cord mesenchymal stem cells (hucMSCs) treatment on pulmonary fibrosis and investigate the circFOXP1-mediated autophagic mechanism of hucMSCs treatment. Pulmonary fibrosis models were established by spraying bleomycin in mice and TGF-β1 treatment of MRC-5 cells. Results showed that hucMSCs were retained in lung and hucMSCs treatment alleviated pulmonary fibrosis. Morphological staining indicated that hucMSCs-treated mice had thinner alveolar walls, effectively improved alveolar structure, significantly reduced alveolar inflammation, and decreased collagen deposition than control mice. Fibrotic proteins, including vimentin, α-SMA, collagens I and III, and the differentiation-related protein S100 calcium-binding protein A4 was reduced considerably in the hucMSCs-treated group. The mechanistic study revealed that the inhibition of hucMSCs treatment on pulmonary fibrogenesis depended on downregulating circFOXP1, in which hucMSCs treatment promoted circFOXP1-mediated autophagy process via blocking the nuclear human antigen R (HuR) translocation and promoting the HuR degradation, leading to a marked decrease in autophagy negative regulators EZH2, STAT1, and FOXK1. In conclusion, hucMSCs treatment significantly improved pulmonary fibrosis by downregulating the circFOXP1-HuR-EZH2/STAT1/FOXK1 autophagic axis. hucMSCs can act as an effective treatment for pulmonary fibrosis.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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