4.7 Article

Differential Therapeutic Effect of Extracellular Vesicles Derived by Bone Marrow and Adipose Mesenchymal Stem Cells on Wound Healing of Diabetic Ulcers and Correlation to Their Cargoes

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出版社

MDPI
DOI: 10.3390/ijms22083851

关键词

wound healing; MSC; exosome; extracellular vesicle; diabetes; adipose; bone marrow; mesenchymal; therapy; cargo

资金

  1. 2i3t Incubatore di Imprese e per il Trasferimento Tecnologico dell'Universita degli Studi di Torino

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Research demonstrates that EVs derived from adipose tissue have a positive impact on diabetic wound healing, while those from bone marrow primarily promote cell proliferation. Significant differences exist in the molecular cargo of these two types of EVs, with ADSC-EVs showing greater angiogenic effects, and BMSC-EVs being more inclined towards cellular proliferation.
Extracellular vesicles (EVs) derived from mesenchymal stem cells isolated from both bone marrow (BMSCs) and adipose tissue (ADSCs) show potential therapeutic effects. These vesicles often show a similar beneficial effect on tissue regeneration, but in some contexts, they exert different biological properties. To date, a comparison of their molecular cargo that could explain the different biological effect is not available. Here, we demonstrated that ADSC-EVs, and not BMSC-EVs, promote wound healing on a murine model of diabetic wounds. Besides a general similarity, the bioinformatic analysis of their protein and miRNA cargo highlighted important differences between these two types of EVs. Molecules present exclusively in ADSC-EVs were highly correlated to angiogenesis, whereas those expressed in BMSC-EVs were preferentially involved in cellular proliferation. Finally, in vitro analysis confirmed that both ADSC and BMSC-EVs exploited beneficial effect on cells involved in skin wound healing such as fibroblasts, keratinocytes and endothelial cells, but through different cellular processes. Consistent with the bioinformatic analyses, BMSC-EVs were shown to mainly promote proliferation, whereas ADSC-EVs demonstrated a major effect on angiogenesis. Taken together, these results provide deeper comparative information on the cargo of ADSC-EVs and BMSC-EVs and the impact on regenerative processes essential for diabetic wound healing.

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