4.7 Article

MiR-211/STAT5A Signaling Modulates Migration of Mesenchymal Stem Cells to Improve its Therapeutic Efficacy

期刊

STEM CELLS
卷 34, 期 7, 页码 1846-1858

出版社

WILEY
DOI: 10.1002/stem.2391

关键词

Mesenchymal stem cells; MicroRNA-211; STAT5A; Migration; Retention; Myocardial infarction

资金

  1. National Key Basic Research Development Plan (973 plan) [2014CB965103]
  2. National High-tech R&D Program 863 Program [2013AA020101, 2015AA020922]
  3. National Natural Science Foundation of China [81320108003, 31371498, 81370247, 81570233, 81573641, 31271585, 81370346]
  4. Education Department of Zhejiang Province [Y201329862, 20130525, 20130668]
  5. Science and Technology Department of Zhejiang province public welfare projects [2014C33190]
  6. Zhejiang Provincial Natural Science Foundation [LY16H280003]
  7. Fundamental Research Funds for the Central Universities [2016XZZX002-03]

向作者/读者索取更多资源

Our previous study showed that the therapeutic effects of mesenchymal stem cells (MSCs) transplantation were improved by enhancing migration. MicroRNA-211 (miR-211) can modulate the migratory properties of some cell types by mechanisms that are not fully understood. This study was designed to investigate a possible role for miR-211 in MSC migration, and whether genetic manipulation of miR-211 in MSCs could be used to enhance its beneficial effects of cell transplantation. Transwell assays confirmed that MSCs migration of was significantly impaired by miR-211 knockdown but enhanced by miR-211 overexpression. MiR-211 overexpressing MSCs also exhibited significantly increased cell engraftment in the peri-infarct areas of female rat hearts 2 days after intravenous transplantation of male MSCs as shown by GFP tracking and SYR gene quantification. This conferred a significant decrease in infarct size and improved cardiac performance. By using a loss or gain of gene function approach, we demonstrated that miR-211 targeted STAT5A to modulate MSCs migration, possibly by interacting with MAPK signaling. Furthermore, the beneficial effects of miR-211 overexpression in MSCs were abolished by simultaneous overexpression of STAT5A whereas the negative effects of miR-211 silencing on MSC migration were rescued by simultaneous downregulation of STAT5A. Finally, using ChIP-PCR and luciferase assays, we provide novel evidence that STAT3 can directly bind to promoter elements that activate miR-211 expression. STAT3/miR-211/STAT5A signaling plays a key role in MSCs migration. Intravenous infusion of genetically modified miR-211 overexpressing MSCs conveys enhanced protection from adverse post-MI remodeling compared with unmodified MSCs. Stem Cells2016;34:1846-1858

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