4.7 Article

Endothelial progenitor cell-derived exosomes, loaded with miR-126, promoted deep vein thrombosis resolution and recanalization

Journal

STEM CELL RESEARCH & THERAPY
Volume 9, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/s13287-018-0952-8

Keywords

Deep vein thrombosis; Resolution; Endothelial progenitor cell; Exosome; miR-126

Funding

  1. Natural Science Foundation of Jiangsu Province [BK20151212, BK20160346]
  2. National Natural Science Foundation of China [81770260, 81400199, 81600217]
  3. Jiangsu Province's Key Discipline/Laboratory of Medicine [XK201118]
  4. Jiangsu Clinical Research Center for Cardiovascular Surgery [BL201451]

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Background: Deep vein thrombosis (DVT) is caused by blood clotting in the deep veins. Thrombosis resolution and recanalization can be accelerated by endothelial progenitor cells. In this report, we investigated the effects of miR-126-loaded EPC-derived exosomes (miR-126-Exo) on EPCs function and venous thrombus resolution. Methods: In vitro promotional effect of miR-126-Exo on the migration and tube incorporation ability of EPCs was investigated via transwell assay and tube formation assay. In addition, a mouse venous thrombosis model was constructed and treated with miR-126-Exo to clarify the therapeutic effect of miR-126-Exo by histological analysis. Lastly, this study predicted a target gene of miR-126 using target prediction algorithms and confirmed it by luciferase activity assay, RT-qPCR, and Western blot. Results: Transwell assay and tube formation assay indicated that miR-126-Exo could enhance the migration and tube incorporation ability of EPCs. Moreover, in vivo study manifested enhanced thrombus organization and recanalization after miR-126-Exo treatment. Meanwhile, we identified that Protocadherin 7 as a target gene of miR-126. Conclusions: To sum up, our results demonstrated that EPC-derived exosomes loaded with miR-126 significantly promoted thrombus resolution in an animal model of venous thrombosis, indicating exosomes as a promising potential vehicle carrying therapeutic molecules for DVT therapy.

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