Related Experiment Video
Updated: May 27, 2025

A Volumetric Method for Quantification of Cerebral Vasospasm in a Murine Model of Subarachnoid Hemorrhage
Published on: July 28, 2018
Deciphering the role of miRNA-mRNA interactions in cerebral vasospasm post intracranial hemorrhage
Xiang Chu1,2, Xiyan Zhu3, Honghao Xu2
1Cognitive Development and Learning and Memory Disorders Translational Medicine Laboratory, Children's Hospital, Chongqing Medical University, Chongqing, China.
Abstract:
Cerebral vasospasm (CVS), a serious complication following subarachnoid hemorrhage, is associated with high rates of mortality and disability. Emerging evidence suggests that abnormal miRNA and mRNA are involved in the development of CVS. This study aims to identify essential miRNA-mRNA regulatory pairs that contribute to CVS pathogenesis. We compared the differences between spasm and non-spasm groups after cerebral hemorrhage, identifying 183 differentially expressed genes (DEGs) and 19 differentially expressed miRNAs (DEMs) related to cerebral vasospasm from the GEO database. Further functional enrichment and KEGG analysis revealed that these DEGs were enriched in several terms and pathways, including the PI3K/AKT/mTOR signaling pathway, oxidative phosphorylation pathway, RNA degradation, and folate biosynthesis signaling pathway. By employing the degree scores method for each gene, we identified the top 10 genes and developed a protein-protein interaction (PPI) network. Additionally, we discovered 19 DEMs associated with CVS and integrated them with mRNA dataset analysis to construct a miRNA-mRNA network, which comprised 8 functionally differentially expressed DEMs and 6 target mRNAs. Experimental validation confirmed the significant regulatory roles of four miRNAs (Let-7a-5p, miR-24-3p, miR-29-3p, and miR-132-3p) and two mRNAs (CDK6 and SLC2A1) in the pathogenesis of CVS. In conclusion, this comprehensive study identifies pivotal miRNAs and their target mRNAs associated with CVS through an integrated bioinformatics analysis of miRNA-mRNA co-expression networks. This approach elucidates the intricate molecular mechanisms underlying CVS and uncovers potential therapeutic targets, thereby providing a valuable foundation for refining and optimizing future treatment strategies.
Insights
This study identifies key microRNA (miRNA) and messenger RNA (mRNA) pairs involved in cerebral vasospasm (CVS) after subarachnoid hemorrhage. These findings reveal molecular mechanisms and potential therapeutic targets for CVS.
Area of Science:
- Neuroscience
- Molecular Biology
- Bioinformatics
Background:
- Cerebral vasospasm (CVS) is a critical complication of subarachnoid hemorrhage, leading to significant mortality and disability.
- Abnormalities in microRNA (miRNA) and messenger RNA (mRNA) expression are implicated in CVS pathogenesis.
Purpose of the Study:
- To identify essential miRNA-mRNA regulatory pairs contributing to the development of cerebral vasospasm.
- To elucidate the molecular mechanisms underlying CVS and discover potential therapeutic targets.
Main Methods:
- Differential gene and miRNA expression analysis using GEO database data.
- Functional enrichment, KEGG pathway analysis, and protein-protein interaction network construction.
- Integrated miRNA-mRNA network analysis and experimental validation of key regulatory molecules.
Main Results:
- Identified 183 differentially expressed genes (DEGs) and 19 differentially expressed miRNAs (DEMs) in CVS.
- Enrichment analysis highlighted pathways including PI3K/AKT/mTOR and oxidative phosphorylation.
- A miRNA-mRNA network revealed 8 DEMs and 6 target mRNAs, with experimental validation confirming roles for four miRNAs and two mRNAs (CDK6, SLC2A1).
Conclusions:
- This study successfully identified pivotal miRNA-mRNA regulatory pairs in CVS pathogenesis through integrated bioinformatics analysis.
- The findings provide a deeper understanding of the molecular mechanisms of CVS and highlight potential therapeutic targets for clinical intervention.
More Related Videos
10:41Analysis of Cerebral Vasospasm in a Murine Model of Subarachnoid Hemorrhage with High Frequency Transcranial Duplex Ultrasound
Published on: June 3, 2021
07:03A Low Mortality Rat Model to Assess Delayed Cerebral Vasospasm After Experimental Subarachnoid Hemorrhage
Published on: January 17, 2013