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Exosomal miR-486 derived from bone marrow mesenchymal stem cells promotes angiogenesis following cerebral ischemic injury by regulating the PTEN/Akt pathway.
- Source :
-
Scientific reports [Sci Rep] 2024 Aug 05; Vol. 14 (1), pp. 18086. Date of Electronic Publication: 2024 Aug 05. - Publication Year :
- 2024
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Abstract
- Bone marrow mesenchymal stem cell-derived exosomes (BMSC-Exos) have been shown to promote angiogenesis after ischemic stroke, in which microRNAs (miRs) are believed to play an important role in exosome-mediated therapeutic effects, though the mechanism is still not clear. In this study, a series of molecular biological and cellular assays, both in vitro and in vivo, were performed to elucidate the role of exosomal miR-486 in angiogenesis following cerebral ischemic and its molecular mechanisms. Our results revealed that BMSC-Exos significantly improved neurological function and increased microvessel density in ischemic stroke rats. In vitro assays showed that BMSC-Exos promoted the proliferation, migration, and tube formation ability of oxygen-glucose deprivation/reoxygenation (OGD/R) injured rat brain microvascular endothelial cells (RBMECs). Importantly, BMSC-Exos increased the expression of miR-486 and phosphorylated protein kinase B (p-Akt) and down-regulated the protein level of phosphatase and tensin homolog (PTEN) in vivo and in vitro. Mechanistic studies demonstrated that transfection with miR-486 mimic enhanced RBMECs angiogenesis and increased p-Akt expression, while inhibited PTEN expression. On the other hand, the miR-486 inhibitor induced an opposite effect, which could be blocked by PTEN siRNA. It was thus concluded that exosomal miR-486 from BMSCs may enhance the functional recovery by promoting angiogenesis following cerebral ischemic injury, which might be related to its regulation of the PTEN/Akt pathway.<br /> (© 2024. The Author(s).)
- Subjects :
- Animals
Rats
Male
Brain Ischemia metabolism
Brain Ischemia pathology
Rats, Sprague-Dawley
Endothelial Cells metabolism
Cell Proliferation
Cell Movement
Disease Models, Animal
Angiogenesis
PTEN Phosphohydrolase metabolism
PTEN Phosphohydrolase genetics
MicroRNAs metabolism
MicroRNAs genetics
Exosomes metabolism
Mesenchymal Stem Cells metabolism
Proto-Oncogene Proteins c-akt metabolism
Signal Transduction
Neovascularization, Physiologic
Subjects
Details
- Language :
- English
- ISSN :
- 2045-2322
- Volume :
- 14
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Scientific reports
- Publication Type :
- Academic Journal
- Accession number :
- 39103424
- Full Text :
- https://doi.org/10.1038/s41598-024-69172-2