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Updated: Jun 5, 2025

Author Spotlight: Standardizing and Improving the Extraction and Purification of Extracellular Vesicles from Human ADSCs
Published on: May 3, 2024
Regenerative Potential Nanomedicine of Adipocyte Stem Cell-Derived Exosomes in Senescent Skin Tissue
An-Na Li1, Jing-Hua Sun1,2, Syafiqah Saidin3,4
1School of Medicine, Huaqiao University, Quanzhou, Fujian, 362021, People's Republic of China.
Introduction:
Skin is the first-line barrier defense against infection, irradiation, and toxins, but is prone to natural aging (intrinsic aging) and environmental factors (extrinsic aging). Hence, there is an increasing urgency to explore an effective treatment for aging skin. This study was focused on testing the potential of utilizing adipocyte stem cell derived exosomal as nanomedicine to regenerate the dermal layer and counteract signs of skin aging.
Methods:
The harvested stem cells from adipose tissues were isolated, cultured, and then starved. The centrifugation of cell cultures medium yielded the human adipose-derived stem cells conditional medium (HADSCs-CM). Collagen secretion and fibroblast viability of human fibroblasts (Hs68) were measured in the presence of HADSCs-CM. The dermal layer, vascular endothelial growth factor (VEGF), and collagen levels were evaluated on the mice animal models between the treatments with and without HADSCs-CM.
Results:
Western blotting, transmission electron microscopy (TEM), and dynamic light scattering (DLS) confirmed that the functional particles in HADSCs-CM were exosomes. When Hs68 fibroblasts were treated with HADSCs-CM, both cell viability and collagen secretion increased in a dose-dependent manner. Following the post-ultraviolet A (post-UVA) exposure, the mice exposed to the HADSCs-CM have decreased dermal thickness and VEGF expression and increased collagen volume compared to the non-HADSCs-CM exposed mice (control group).
Conclusion:
HADSCs-CM significantly alleviated signs of skin senescence, including reduced dermal thickness, decreased VEGF expression, and enhanced collagen production. Exosomes, identified in the HADSCs-CM, are the functional component of these regenerative effects. This study highlights that the exosomal nanomedicine found in HADSCs-CM could regenerate skin, boost collagen production, improve fibroblast cell viability, and contain functional exosomes.
Insights
Adipose stem cell-derived exosomes in human adipose-derived stem cells conditional medium (HADSCs-CM) show potential as nanomedicine for skin regeneration. This study demonstrates HADSCs-CM effectively rejuvenates aging skin by boosting collagen and fibroblast viability.
Area of Science:
- Biotechnology
- Dermatology
- Regenerative Medicine
Background:
- Skin aging is a natural process influenced by intrinsic and extrinsic factors, necessitating effective treatments.
- Adipose stem cells offer a promising source for regenerative therapies due to their differentiation potential.
- Exosomes derived from stem cells are emerging as key mediators of cellular communication and repair.
Purpose of the Study:
- To investigate the potential of exosomes derived from human adipose-derived stem cells (HADSCs-CM) as nanomedicine for skin regeneration.
- To evaluate the efficacy of HADSCs-CM in counteracting signs of skin aging, including dermal layer regeneration and collagen production.
Main Methods:
- Human adipose-derived stem cells were cultured, and their conditional medium (HADSCs-CM) was collected and analyzed for exosomes using Western blotting, TEM, and DLS.
- The effects of HADSCs-CM on human fibroblast (Hs68) viability and collagen secretion were assessed in vitro.
- The in vivo efficacy was evaluated in mice models, assessing dermal thickness, VEGF expression, and collagen levels after UVA exposure and HADSCs-CM treatment.
Main Results:
- Exosomes were confirmed as the functional components within HADSCs-CM.
- HADSCs-CM significantly increased fibroblast viability and collagen secretion in a dose-dependent manner.
- In vivo studies showed that HADSCs-CM treatment reduced dermal thickness and VEGF expression while increasing collagen volume in mice post-UVA exposure.
Conclusions:
- HADSCs-CM, containing functional exosomes, effectively alleviates signs of skin senescence.
- Exosomal nanomedicine derived from adipose stem cells promotes skin regeneration by enhancing collagen production and fibroblast activity.
- This study supports the use of HADSCs-CM as a potential therapeutic agent for aging skin.
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