Mesenchymal stem cells-derived exosomes carrying microRNA-30b confer protection against pulmonary fibrosis by

Liang Zhu1, Yun Xu2, Jianqing Wang3

  • 1Department of Rheumatology, The Second Affiliated Hospital, Zhejiang University School of Medicine, No.88, Jiefang Rd, Shangcheng District, Hangzhou, 310009, Zhejiang, People's Republic of China.

Insights

Mesenchymal stem cell exosomes carrying miR-30b show potential in treating pulmonary fibrosis (PF). This exosome-delivered microRNA targets Runx1, reducing Spred2 expression and alleviating lung inflammation and fibrosis in patients with idiopathic pulmonary fibrosis (IPF).

Area of Science:

  • Pulmonary Medicine
  • Stem Cell Biology
  • Molecular Biology

Background:

  • Idiopathic pulmonary fibrosis (IPF) is a fatal chronic lung disease.
  • Mesenchymal stem cell (MSC)-secreted exosomes (exos) and exosomal microRNAs (miRs) show promise in treating pulmonary fibrosis (PF).
  • Bioinformatics analysis revealed miR-30b downregulation in IPF patient tissues, suggesting its role in IPF pathogenesis and treatment.

Purpose of the Study:

  • To investigate the mechanism by which MSCs-exos-packaged miR-30b alleviates PF.
  • To determine the therapeutic potential of miR-30b in IPF treatment.

Main Methods:

  • Established IPF models in human lung epithelial cells (MLE12) and mice using TGF-β1 and bleomycin, respectively.
  • Co-incubated MLE12 cells with MSCs-exos (with or without Spred2/Runx1 manipulation) and analyzed cell viability and apoptosis.
  • Administered exosomes and/or viral vectors in IPF mice, followed by fibrosis evaluation, ELISA for inflammatory markers, and Western blot for fibrosis-related proteins.
  • Investigated the regulatory relationship between miR-30b, Runx1, and Spred2 at the promoter level.

Main Results:

  • miR-30b was downregulated in IPF patient serum and TGF-β1-stimulated MLE12 cells.
  • miR-30b directly inhibited Spred2 transcription by targeting Runx1.
  • MSCs-exos or MSCs-exo-miR-30b treatment reduced apoptosis, inflammation, and fibrosis in MLE12 cells, an effect reversed by Runx1 or Spred2 overexpression.
  • Exo-miR-30b decreased Runx1 and Spred2 expression, mitigating fibrosis and inflammation in IPF mice.

Conclusions:

  • MSCs-exos-encapsulated miR-30b demonstrates potential in inhibiting PF.
  • The therapeutic effect of miR-30b involves targeting RUNX1 to downregulate Spred2 transcription, thereby reducing fibrosis and inflammation.
  • This study provides evidence and potential therapeutic targets for managing clinical PF.