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Updated: Jul 19, 2025

Prospective, Randomized, and Controlled Study of a Human Umbilical Cord Mesenchymal Stem Cell Injection for Treating Diabetic Foot Ulcers
Published on: March 3, 2023
Exosomes: Potential key players towards novel therapeutic options in diabetic wounds
Jiawei Feng1, Yichen Yao2, Qixue Wang3
1Shanghai Traditional Chinese Medicine Integrated Hospital, Shanghai University of Traditional Chinese Medicine, Shanghai 200082, China.
Abstract:
Diabetic wounds are usually difficult to heal, and wounds in foot in particular are often aggravated by infection, trauma, diabetic neuropathy, peripheral vascular disease and other factors, resulting in serious foot ulcers. The pathogenesis and clinical manifestations of diabetic wounds are complicated, and there is still a lack of objective and in-depth laboratory diagnosis and classification standards. Exosomes are nanoscale vesicles containing DNA, mRNA, microRNA, cyclic RNA, metabolites, lipids, cytoplasm and cell surface proteins, etc., which are involved in intercellular communication and play a crucial role in vascular regeneration, tissue repair and inflammation regulation in the process of diabetic wound healing. Here, we discussed exosomes of different cellular origins, such as diabetic wound-related fibroblasts (DWAF), adipose stem cells (ASCs), mesenchymal stem cells (MSCs), immune cells, platelets, human amniotic epithelial cells (hAECs), epidermal stem cells (ESCs), and their various molecular components. They exhibit multiple therapeutic effects during diabetic wound healing, including promoting cell proliferation and migration associated with wound healing, regulating macrophage polarization to inhibit inflammatory responses, promoting nerve repair, and promoting vascular renewal and accelerating wound vascularization. In addition, exosomes can be designed to deliver different therapeutic loads and have the ability to deliver them to the desired target. Therefore, exosomes may become an innovative target for precision therapeutics in diabetic wounds. In this review, we summarize the latest research on the role of exosomes in the healing of diabetic wound by regulating the pathogenesis of diabetic wounds, and discuss their potential applications in the precision treatment of diabetic wounds.
Insights
Exosomes show promise for treating diabetic wounds by promoting tissue repair and vascular regeneration. These tiny vesicles offer a potential pathway for precision therapeutics in managing complex diabetic foot ulcers.
Area of Science:
- Biomedical science
- Regenerative medicine
- Wound healing research
Background:
- Diabetic wounds, especially foot ulcers, are challenging to heal due to factors like infection and neuropathy.
- Current diagnostic and classification standards for diabetic wounds are insufficient.
- Exosomes, involved in cell communication, are crucial for tissue repair and inflammation regulation.
Purpose of the Study:
- To review the role of exosomes in diabetic wound healing.
- To discuss exosomes from various cell origins and their therapeutic potential.
- To explore exosomes as targets for precision therapeutics in diabetic wounds.
Main Methods:
- Review of current research on exosomes in diabetic wound healing.
- Discussion of exosomes' molecular components and cellular origins (DWAF, ASCs, MSCs, etc.).
- Analysis of exosome functions including cell proliferation, macrophage polarization, nerve repair, and vascularization.
Main Results:
- Exosomes promote cell proliferation, migration, and nerve repair.
- Exosomes regulate macrophage polarization, reducing inflammation.
- Exosomes accelerate vascular renewal and wound vascularization.
- Engineered exosomes can deliver therapeutic payloads to specific targets.
Conclusions:
- Exosomes exhibit significant therapeutic effects in diabetic wound healing.
- Exosomes represent a promising avenue for innovative precision therapeutics.
- Further research into exosome-based therapies could revolutionize diabetic wound management.
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