Exosomal miRNA-mRNA interactions highlight MSC-like molecular signatures in dental pulp fibroblasts

Koki Yoshida1, Fumiya Harada2, Osamu Uehara3

  • 1Division of Oral Medicine and Pathology, Department of Human Biology and Pathophysiology, School of Dentistry, Health Sciences University of Hokkaido, 1757 Kanazawa, Hokkaido, 061-0293, Ishikari-Tobetsu, Japan.

PubMed
Abstract

Insights

Oral fibroblast exosomes, particularly from dental pulp, show distinct regenerative potential. Dental pulp fibroblast exosomes exhibit mesenchymal stem cell-like features, suggesting their use as cell-free regenerative tools.

Area of Science:

  • Biomedical Engineering
  • Regenerative Medicine
  • Cell Biology

Background:

  • Mesenchymal stem cell (MSC)-derived exosomes are key for tissue regeneration.
  • Exosomes from oral fibroblasts (gingival, periodontal ligament, dental pulp) are less understood.
  • This study investigates cell type-specific miRNA-mRNA regulation in oral fibroblast exosomes.

Purpose of the Study:

  • Characterize miRNA-mRNA regulatory features of exosomes from different oral fibroblasts.
  • Evaluate links between oral fibroblast exosomes and MSC-like molecular programs.
  • Explore potential of oral fibroblast exosomes as cell-free regenerative tools.

Main Methods:

  • Isolated fibroblast populations from gingiva, periodontal ligament, and dental pulp.
  • Performed bulk RNA-seq on cells and miRNA/small RNA/RNA-seq on exosomes (n=3 donors).
  • Identified miRNA-mRNA axes based on inverse expression and validated interactions.

Main Results:

  • Dental pulp fibroblasts showed higher stemness and osteogenic gene expression.
  • Gingival and periodontal ligament fibroblasts had signatures related to inflammation and homeostasis.
  • Distinct exosome regulatory modules were found: miR-660-5p/XKR7 (gingival), miR-199a-5p/COL19A1 (periodontal ligament), and MSC-associated axes (dental pulp).

Conclusions:

  • Oral fibroblast exosomes possess distinct molecular signatures based on tissue origin.
  • Dental pulp fibroblast exosomes exhibit notable mesenchymal stem cell-like regulatory features.
  • These findings suggest potential for using oral fibroblast exosomes as practical, cell-free regenerative therapies.