Engineered exosomes as a prospective therapy for diabetic foot ulcers

Author:

Guo Lifei123,Xiao Dan12,Xing Helin4,Yang Guodong2,Yang Xuekang1

Affiliation:

1. Fourth Military Medical University Department of Burns and Cutaneous Surgery, Xijing Hospital, , Chang-Le Xi Street #127, Xi'an 710032, China

2. Fourth Military Medical University The State Laboratory of Cancer Biology, Department of Biochemistry and Molecular Biology, , Chang-Le Xi Street #127, Xi'an 710032, China

3. Fourth Military Medical University Cadet Team 6 of School of Basic Medicine, , Chang-Le Xi Street #127, Xi'an 710032, China

4. Capital Medical University Department of Prosthodontics, Beijing Stomatological Hospital and School of Stomatology, , Tiantanxili Street #4, Dongcheng District, Beijing 100050, China

Abstract

Abstract Diabetic foot ulcer (DFU), characterized by high recurrence rate, amputations and mortality, poses a significant challenge in diabetes management. The complex pathology involves dysregulated glucose homeostasis leading to systemic and local microenvironmental complications, including peripheral neuropathy, micro- and macro-angiopathy, recurrent infection, persistent inflammation and dysregulated re-epithelialization. Novel approaches to accelerate DFU healing are actively pursued, with a focus on utilizing exosomes. Exosomes are natural nanovesicles mediating cellular communication and containing diverse functional molecular cargos, including DNA, mRNA, microRNA (miRNA), lncRNA, proteins, lipids and metabolites. While some exosomes show promise in modulating cellular function and promoting ulcer healing, their efficacy is limited by low yield, impurities, low loading content and inadequate targeting. Engineering exosomes to enhance their curative activity represents a potentially more efficient approach for DFUs. This could facilitate focused repair and regeneration of nerves, blood vessels and soft tissue after ulcer development. This review provides an overview of DFU pathogenesis, strategies for exosome engineering and the targeted therapeutic application of engineered exosomes in addressing critical pathological changes associated with DFUs.

Funder

R&D Program of Beijing Municipal Education Commission

Shanxi Province Foundation of China

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

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