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MiR-27a-3p suppresses cerebral ischemia-reperfusion injury by targeting FOXO1
Wenyu Li1, Qiongbin Zhu1, Xiaoyan Xu1
1Department of Neurology, Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou 133000, Zhejiang, China.
Abstract:
Cerebral ischemia-reperfusion (CI/R) injury is a serious complication when treating patients experiencing ischemic stroke. Although the microRNA miR-27a-3p reportedly participates in ischemia/reperfusion (I/R) injury, its actions in CI/R remain unclear. To mimic CI/R in vitro, HT22 cells were subjected to oxygen glucose deprivation/reoxygenation (OGD/R). The results indicate that OGD inhibited growth and induced apoptosis among HT22 cells. The apoptosis was accompanied by increases in activated caspases 3 and 9 and decreases in Bcl-2. Oxidative stress was also increased, as indicated by increases in ROS and malondialdehyde and decreases in glutathione and superoxide dismutase. In addition, OGD induced G1 arrest in HT22 cells with corresponding upregulation of FOXO1 and p27 Kip1, suggesting the cell cycle arrest was mediated by FOXO1/p27 Kip1 signaling. Notably, FOXO1 was found to be the direct target of miR-27a-3p in HT22 cells. MiR-27a-3p was downregulated in OGD/R-treated HT22 cells, and miR-27a-3p mimics partially or entirely reversed all of the in vitro effects of OGD. Moreover, miR-27a-3p agomir significantly alleviated the symptoms of CI/R in vivo in a rat model of CI/R. Thus, MiR-27a-3p appears to suppress CI/R injury by targeting FOXO1.
Insights
MicroRNA miR-27a-3p suppresses cerebral ischemia-reperfusion (CI/R) injury by targeting FOXO1. This microRNA alleviates cell apoptosis and oxidative stress, offering a potential therapeutic target for stroke complications.
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- Cerebral ischemia-reperfusion (CI/R) injury is a significant clinical challenge following ischemic stroke.
- The role of microRNA miR-27a-3p in CI/R injury is not fully understood.
Purpose of the Study:
- To investigate the function of miR-27a-3p in CI/R injury.
- To elucidate the underlying molecular mechanisms of miR-27a-3p in CI/R.
Main Methods:
- Oxygen glucose deprivation/reoxygenation (OGD/R) model in HT22 cells for in vitro studies.
- In vivo CI/R rat model.
- Analysis of cell apoptosis, oxidative stress markers, cell cycle regulators, and target gene interactions.
Main Results:
- OGD/R induced HT22 cell apoptosis, oxidative stress, and G1 cell cycle arrest.
- miR-27a-3p was downregulated in OGD/R-treated cells.
- FOXO1 was identified as a direct target of miR-27a-3p.
- miR-27a-3p mimics reversed OGD/R-induced damage in vitro.
- miR-27a-3p agomir attenuated CI/R injury in vivo.
Conclusions:
- miR-27a-3p plays a protective role against CI/R injury.
- The miR-27a-3p/FOXO1 axis is a key regulator of CI/R-induced cellular damage.
- miR-27a-3p represents a potential therapeutic strategy for cerebral ischemia-reperfusion injury.

