Extracellular Vesicles of GMSCs Alleviate Aging-Related Cell Senescence

H Z Shi1,2, J C Zeng1,3, S H Shi1

  • 1Department of Oral and Maxillofacial Surgery and Pharmacology, University of Pennsylvania School of Dental Medicine, Philadelphia, PA, USA.

Insights

Gingiva-derived mesenchymal stem cell extracellular vesicles (GMSC-EVs) combat cellular senescence, a key aging factor. These EVs show promise in treating age-related skin and vascular issues by reducing oxidative stress and senescence markers.

Area of Science:

  • Gerontology
  • Cell Biology
  • Biomedical Engineering

Background:

  • Cellular senescence, marked by cell cycle arrest and impaired tissue function, is central to aging.
  • Aberrant activation of the mammalian target of rapamycin (mTOR) signaling pathway is implicated in senescence.
  • Oxidative stress accelerates cellular senescence, contributing to age-related decline.

Purpose of the Study:

  • To investigate the anti-aging potential of extracellular vesicles (EVs) from gingiva-derived mesenchymal stem cells (GMSC-EVs).
  • To evaluate the effects of GMSC-EVs on oxidative stress-induced cellular senescence in human endothelial cells and skin fibroblasts.
  • To assess the therapeutic efficacy of GMSC-EVs in aged mouse models.

Main Methods:

  • Treatment of human umbilical vein endothelial cells (HUVECs) and skin fibroblasts with GMSC-EVs under oxidative stress conditions.
  • Analysis of senescence markers (β-galactosidase, p21, p53, γH2AX) and mTOR/pS6 signaling pathway activation.
  • Assessment of HUVEC proliferation and tube formation.
  • Systemic administration of GMSC-EVs in aged mice and analysis of senescence markers in skin and heart tissues.

Main Results:

  • GMSC-EVs significantly reduced the expression of senescence markers and inhibited mTOR/pS6 signaling in stressed cells.
  • GMSC-EVs restored proliferation and tube formation capacity in HUVECs.
  • In aged mice, GMSC-EVs decreased levels of p21, mTOR/pS6, IL-6, and TNF-α in skin and heart tissues.

Conclusions:

  • GMSC-EVs effectively inhibit oxidative stress-induced cellular senescence in endothelial cells and skin fibroblasts.
  • GMSC-EVs demonstrate anti-aging potential by attenuating age-related molecular changes in vivo.
  • GMSC-EVs represent a promising cell-free therapeutic strategy for age-related skin and vascular dysfunction.

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