Adipose stem cell-derived exosomes in the treatment of wound healing in preclinical animal models: a meta-analysis

Author:

Wei Jing-tao1,He Ting1ORCID,Shen Kuo1ORCID,Xu Zhi-gang1,Han Jun-tao1,Yang Xue-kang1ORCID

Affiliation:

1. The First Affiliated Hospital of Air Force Medical University Department of Burns and Cutaneous Surgery, Burn Center of PLA, , Chang-Le Xi Street#127, Xi'an 710032 , China

Abstract

Abstract Background Wound healing has always been a serious issue for doctors and primary health care systems. In addition, adipose stem cell-derived exosomes have been proven to play a positive and effective role in tissue repair and regeneration. A systematic review of these preclinical studies was performed to assess the efficacy of adipose stem cell-derived exosomes (ADSC-Exos) in treating wounds. This article aimed to study the effectiveness of ADSC-Exos for the treatment of animal skin wounds and includes a meta-analysis of exosomes from general wounds and diabetic ulcer wounds in in vitro models of animals to provide a theoretical basis for clinical translation. Methods A total of 19 studies with 356 animals were identified by searching the PubMed, Cochrane, MEDLINE Complete, Web of Science, CNKI and Wanfang databases from inception to 15 November 2022. No language or time restrictions were applied. Stata17 was used for all the data analyses. Results The meta-analysis showed that ADSC-Exo therapy significantly improved the wound healing rate in the control group, except in the diabetes group on day 7. Day 7 of general wounds [standard mean difference (SMD) 2.87, 95% confidence interval (CI) 1.91–3.83)] and day 14 (SMD 2.89, 95%CI 1.47–4.30). Day 14 (SMD 3.43, 95%CI 1.28–5.58) of diabetic wounds. Other outcomes, such as blood vessel density, collagen deposition and wound re-epithelization, improved with the administration of ADSC-Exos. Conclusions A meta-analysis showed that ADSC-Exo therapy applied to general and diabetic wounds can promote neovascularization, improve epithelization and collagen fiber deposition, promote healing, and reduce scar formation. ADSC-Exos have broad potential in preclinical research and clinical fields.

Funder

National Natural Science Foundation of China

Shanxi Province Foundation of China

Publisher

Oxford University Press (OUP)

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