4.7 Article

The Pro-angiogenesis Of Exosomes Derived From Umbilical Cord Blood Of Intrauterine Growth Restriction Pigs Was Repressed Associated With MiRNAs

期刊

INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
卷 14, 期 11, 页码 1426-1436

出版社

IVYSPRING INT PUBL
DOI: 10.7150/ijbs.27029

关键词

IUGR; pig; umbilical cord blood; exosomes; angiogenesis; miRNA

资金

  1. National Natural Science Foundation of China [31530073]
  2. Chinese National Sci & Tech Support Program [2015BAD03B01-11]
  3. Sichuan Sci & Tech Support Program [16ZC2838, 2016NZ0089]
  4. earmarked fund for China Agriculture Research System [CARS-36-05B]

向作者/读者索取更多资源

Dysfunctional umbilical cord blood (UCB) is a key factor for the development of intrauterine growth restriction (IUGR) in utero. Poor degrees of angiogenesis were observed during IUGR development. Here, it was demonstrated that NV-EXO (normal piglet's Umbilical Veins derived exosomes) promoted angiogenesis within the subdued pro-angiogenesis context of IV-EXO (IUGR piglet's Umbilical Veins derived exosomes). Investigation of the miRNA transcriptome of umbilical cord vein and artery exosomes between IUGR and normal littermates showed significant differences between umbilical veins from normal (NV) and IUGR (IV) piglets. Similar patterns were observed in normal (NA) and IUGR (IA) umbilical arteries as well. Moreover, the miRNAs expession level was more stable in NV. Further analysis revealed that miRNAs related to angiogenesis exhibited aberrant expression in IUGR pigs. The miRNA expression patterns between IUGR and normal piglets showed great difference. Expression of miR-150 in the tissues and UCB exosomes of IUGR pigs was significantly decreased. Up-regulation of miR-150 was able to increase proliferation, migration and tube formation of Human umbilical vein endothelial cells (HUVECs), suggesting a pro-angiogenic role. Furthermore, the data demonstrated that UCB derived miRNAs participate in fetal epigenetic regulation during pregnancy, suggesting a novel possible explanation for abnormal embryologic vascular development and several congenital cardiovascular diseases.

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