4.6 Article

MicroRNA-30a regulates acute cerebral ischemia-induced blood-brain barrier damage through ZnT4/zinc pathway

期刊

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/0271678X20926787

关键词

Blood-brain barrier; ischemic stroke; microRNA-30a; zinc; ZnT4

资金

  1. National Natural Science Foundation of China [81971231]
  2. China Scholarship Council [201608210006]
  3. Scientific Research Project from the Educational Department of Liaoning Province [JYTQN201733]
  4. Natural Science Foundation of Liaoning Province [201602319]
  5. US National Institutes of Health [P30GM103400]

向作者/读者索取更多资源

The study revealed that miR-30a plays a role in mediating BBB damage after ischemic stroke and its inhibitor can reduce zinc accumulation, increase ZnT4 expression, and prevent BBB damage. miR-30a could be a potential therapeutic target for ischemic stroke.
The mechanism of early blood-brain barrier (BBB) disruption after stroke has been intensively studied but still not fully understood. Here, we report that microRNA-30a (miR-30a) could mediate BBB damage using both cellular and animal models of ischemic stroke. In the experiments in vitro, inhibition of miR-30a decreased BBB permeability, prevented the degradation of tight junction proteins, and reduced intracellular free zinc in endothelial cells. We found that the zinc transporter ZnT4 was a direct target of negative regulation by miR-30a, and ZnT4/zinc signaling pathway contributed significantly to miR-30a-mediated BBB damage. Consistent with these in vitro findings, treatment with miR-30a inhibitor reduced zinc accumulation, increased the expression of ZnT4, and prevented the loss of tight junction proteins in microvessels of ischemic animals. Furthermore, inhibition of miR-30a, even at 90 min post onset of middle cerebral artery occlusion, prevented BBB damage, reduced infarct volume, and ameliorated neurological deficits. Together, our findings provide novel insights into the mechanisms of cerebral ischemia-induced BBB disruption and indicate miR-30a as a regulator of BBB function that can be an effective therapeutic target for ischemic stroke.

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