4.8 Article

Circulating Exosomal miR-20b-5p Inhibition Restores Wnt9b Signaling and Reverses Diabetes-Associated Impaired Wound Healing

期刊

SMALL
卷 16, 期 3, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201904044

关键词

exosomes; miR-20b-5p; type 2 diabetes; wounds

资金

  1. National Science Foundation of China [81772345, 81606934]
  2. Healthy Commission Key Project of Hubei Province [WJ2019Z009]
  3. Healthy Commission General Project of Hubei Province [WJ2019M023]
  4. Science and Technology Department of Hubei Province [2016CFB424]
  5. Development Center for Medical Science and Technology National Health and Family Planning Commission of the People's Republic of China [ZX-01-C2016024]
  6. Wuhan Union Hospital [02.03.2017-13]
  7. Health Research Project of Metallurgical Safety and Health Branch of China Metal Society [jkws201824]

向作者/读者索取更多资源

At present, developing therapeutic strategies to improve wound healing in individuals with diabetes remains challenging. Exosomes represent a promising nanomaterial from which microRNAs (miRNAs) can be isolated. These miRNAs have the potential to exert therapeutic effects, and thus, determining the potential therapeutic contributions of specific miRNAs circulating in exosomes is of great importance. In the present study, circulating exosomal miRNAs are identified in diabetic patients and assessed for their roles in the context of diabetic wound healing. A significant upregulation of miR-20b-5p is observed in exosomes isolated from patients with type 2 diabetes mellitus (T2DM), and this miRNA is able to suppress human umbilical vein endothelial cell angiogenesis via regulation of Wnt9b/beta-catenin signaling. It is found that the application of either miR-20b-5p or diabetic exosomes to wound sites is sufficient to slow wound healing and angiogenesis. In diabetic mice, it is found that knocking out miR-20b-5p significantly enhances wound healing and promotes wound angiogenesis. Together, these findings thus provide strong evidence that miR-20b-5p is highly enriched in exosomes from patients with T2DM and can be transferred to cells of the vascular endothelium, where it targets Wnt9b signaling to negatively regulate cell functionality and angiogenesis.

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