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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.
Abstract:
Healthy aging is a complex biological process with progressive accumulation of senescent cells characterized by stable cell cycle arrest, resulting in impaired homeostasis, regenerative potential, and gradual functional decline in multiple tissues and organs, whereby the aberrant activation of mammalian target of rapamycin (mTOR) signaling networks plays a central role. Herein, we explored the effects of extracellular vesicles (EVs) released by gingiva-derived mesenchymal stem cells (GMSC-EVs) on oxidative stress-induced cellular senescence in human endothelial cells and skin fibroblasts and their antiaging potentials. Our results showed that GMSC-EVs robustly abrogated oxidative stress-induced upregulation in the expression of cellular senescence-related genes, such as β-galactosidase, p21, p53, and γH2AX, and mTOR/pS6 signaling pathway, in human umbilical vein endothelial cells (HUVECs) and skin fibroblasts. Meanwhile, GMSC-EVs restored oxidative stress-induced impairment in proliferation and tube formation by HUVECs. Systemic administration of GMSC-EVs attenuated aging-associated elevation in the expression levels of p21, mTOR/pS6, interleukin 6, and tumor necrosis factor α in skin and heart tissues of aged mice. These findings suggest that GMSC-EVs could be a potential alternative source of cell-free product for attenuation of aging-related skin and vascular dysfunctions due to their potent inhibitory effects on oxidative stress-induced cellular senescence in endothelial cells and skin fibroblasts.
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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