RRC ID 32798
Author Yamamoto S, Niida S, Azuma E, Yanagibashi T, Muramatsu M, Huang TT, Sagara H, Higaki S, Ikutani M, Nagai Y, Takatsu K, Miyazaki K, Hamashima T, Mori H, Matsuda N, Ishii Y, Sasahara M.
Title Inflammation-induced endothelial cell-derived extracellular vesicles modulate the cellular status of pericytes.
Journal Sci Rep
Abstract Emerging lines of evidence have shown that extracellular vesicles (EVs) mediate cell-to-cell communication by exporting encapsulated materials, such as microRNAs (miRNAs), to target cells. Endothelial cell-derived EVs (E-EVs) are upregulated in circulating blood in different pathological conditions; however, the characteristics and the role of these E-EVs are not yet well understood. In vitro studies were conducted to determine the role of inflammation-induced E-EVs in the cell-to-cell communication between vascular endothelial cells and pericytes/vSMCs. Stimulation with inflammatory cytokines and endotoxin immediately induced release of shedding type E-EVs from the vascular endothelial cells, and flow cytometry showed that the induction was dose dependent. MiRNA array analyses revealed that group of miRNAs were specifically increased in the inflammation-induced E-EVs. E-EVs added to the culture media of cerebrovascular pericytes were incorporated into the cells. The E-EV-supplemented cells showed highly induced mRNA and protein expression of VEGF-B, which was assumed to be a downstream target of the miRNA that was increased within the E-EVs after inflammatory stimulation. The results suggest that E-EVs mediate inflammation-induced endothelial cell-pericyte/vSMC communication, and the miRNAs encapsulated within the E-EVs may play a role in regulating target cell function. E-EVs may be new therapeutic targets for the treatment of inflammatory diseases.
Volume 5
Pages 8505
Published 2015-2-17
DOI 10.1038/srep08505
PII srep08505
PMID 25687367
PMC PMC4330530
MeSH Animals Cell Communication Endothelial Cells / metabolism* Extracellular Vesicles / metabolism* Gene Expression Profiling Inflammation / genetics Inflammation / metabolism* Mice MicroRNAs / genetics Pericytes / metabolism* RNA, Messenger / genetics RNA, Messenger / metabolism
IF 3.998
Times Cited 64
WOS Category MULTIDISCIPLINARY SCIENCES
Resource
DNA material GNP Clone IRAL020F10 (HGY088130)