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.

PubMed
Abstract

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.

Related Concept Videos

Clinical Applications of Epidermal Stem Cells01:19

Clinical Applications of Epidermal Stem Cells

Epidermal stem cells (EpiSCs) are mainly located at the basal layer of the epidermis. These cells repair minor injuries of the skin and replace dead skin cells. However, EpiSCs’ cannot heal severe wounds such as major burns or those from diabetes or hereditary disorders. In such cases, culturing the epidermal stem cells from the patient is possible and has yielded successful treatment options, such as laboratory-grown skin grafts. These grafts are synthesized using a patient’s own...
2.7K
Stem Cell Therapy for Tissue Regeneration01:21

Stem Cell Therapy for Tissue Regeneration

Stem cell therapy is a method used in regenerative medicine to repair and restore function to damaged tissues and organs. Stem cells have the potential to proliferate and differentiate into various tissue types, making them ideal candidates for tissue regeneration. For example, hematopoietic stem cell transplants are commonly used in blood cancer treatment to replenish damaged bone marrow and restore healthy blood cells.
Types of Stem Cells used in Stem Cell Therapy
The two main cell...
4.0K
Overview of Exosomes01:36

Overview of Exosomes

Exosomes are stable, lipid bilayer-enclosed vesicles capable of crossing biological barriers. They can carry a wide range of molecules required for intercellular communication. Once exosomes are released from the cell where they originated, they enter a recipient cell through various pathways such as fusion, receptor-mediated endocytosis, macropinocytosis, and phagocytosis.
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
2.7K
Mesenchymal Stem Cells01:19

Mesenchymal Stem Cells

Mesenchymal stem cells (MSCs) are adult stem cells that can differentiate into most connective tissue cell types, except for hematopoietic cells, depending upon the source of MSCs. For example, bone-marrow-derived MSCs (BM-MSCs) can differentiate into osteocytes, hepatocytes, and pancreatic and neuronal cells. MSCs can be isolated from various sources such as bone marrow, placenta, adipose tissue, teeth, and Wharton’s jelly, a gelatinous substance in the umbilical cord. The ease of their...
4.6K
Renewal of Skin Epidermal Stem Cells01:12

Renewal of Skin Epidermal Stem Cells

The skin is divided into epidermis, dermis, and hypodermis, the skin's outermost, middle, and inner layers. The human epidermal layer regularly undergoes renewal, where old, dead cells are replaced by new cells. Epidermal stem cells or EpiSCs divide and differentiate to restore the lost cells. For the renewal process, some EpiSCs continuously self-renew. In contrast, few others differentiate into transit-amplifying cells, which later form prickle or spinous cells, followed by granular...
2.5K
Stem Cell Niche01:26

Stem Cell Niche

The stem cell niche is the dynamic microenvironment where stem cells reside. Inside these niches, the cells may remain undifferentiated, undergo high self-renewal, or become lineage-specific progenitors. Stem cells coexist with other niche cells, such as stromal cells. They also interact closely with the ECM. Cell-cell and cell-matrix communication occur via adhesion molecules or soluble factors that signal the stem cells and determine their fate. Stromal cells also provide survival signals to...
5.0K