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Lipidomics and Transcriptomics in Neurological Diseases
Published on: March 18, 2022
Identification of microRNAs with Dysregulated Expression in Status Epilepticus Induced Epileptogenesis
Mykaella Andrade de Araújo1, Thalita Ewellyn Batista Sales Marques1, Shirley Octacílio-Silva2
1Department of Cellular and Molecular Biology, Institute of Biological Sciences and Health, Federal University of Alagoas, Maceio, Alagoas, Brazil.
Abstract:
The involvement of miRNA in mesial temporal lobe epilepsy (MTLE) pathogenesis has increasingly become a focus of epigenetic studies. Despite advances, the number of known miRNAs with a consistent expression response during epileptogenesis is still small. Addressing this situation requires additional miRNA profiling studies coupled to detailed individual expression analyses. Here, we perform a miRNA microarray analysis of the hippocampus of Wistar rats 24 hours after intra-hippocampal pilocarpine-induced Status Epilepticus (H-PILO SE). We identified 73 miRNAs that undergo significant changes, of which 36 were up-regulated and 37 were down-regulated. To validate, we selected 5 of these (10a-5p, 128a-3p, 196b-5p, 352 and 324-3p) for RT-qPCR analysis. Our results confirmed that miR-352 and 196b-5p levels were significantly higher and miR-128a-3p levels were significantly lower in the hippocampus of H-PILO SE rats. We also evaluated whether the 3 miRNAs show a dysregulated hippocampal expression at three time periods (0h, 24h and chronic phase) after systemic pilocarpine-induced status epilepticus (S-PILO SE). We demonstrate that miR-128a-3p transcripts are significantly reduced at all time points compared to the naïve group. Moreover, miR-196b-5p was significantly higher only at 24h post-SE, while miR-352 transcripts were significantly up-regulated after 24h and in chronic phase (epileptic) rats. Finally, when we compared hippocampi of epileptic and non-epileptic humans, we observed that transcript levels of miRNAs show similar trends to the animal models. In summary, we successfully identified two novel dysregulated miRNAs (196b-5p and 352) and confirmed miR-128a-3p downregulation in SE-induced epileptogenesis. Further functional assays are required to understand the role of these miRNAs in MTLE pathogenesis.
Insights
MicroRNAs (miRNAs) are implicated in mesial temporal lobe epilepsy (MTLE) pathogenesis. This study identified novel dysregulated miRNAs, miR-196b-5p and miR-352, and confirmed miR-128a-3p downregulation in epilepsy models, offering new insights into MTLE epigenetic mechanisms.
Area of Science:
- Neuroscience
- Epigenetics
- Molecular Biology
Background:
- MicroRNA (miRNA) dysregulation is increasingly recognized in mesial temporal lobe epilepsy (MTLE) pathogenesis.
- Identifying specific miRNAs involved in epileptogenesis is crucial for understanding disease mechanisms.
- Current knowledge of consistently expressed miRNAs in epilepsy remains limited.
Purpose of the Study:
- To profile miRNA expression changes in the hippocampus following pilocarpine-induced status epilepticus (SE) in rats.
- To validate the expression patterns of selected miRNAs.
- To investigate the temporal dynamics and human relevance of identified miRNA dysregulations in epilepsy.
Main Methods:
- miRNA microarray analysis of rat hippocampus 24 hours after intra-hippocampal pilocarpine-induced SE.
- Quantitative real-time PCR (RT-qPCR) for validating miRNA expression.
- Analysis of miRNA expression at multiple time points (0h, 24h, chronic phase) after systemic pilocarpine-induced SE.
- Comparison of miRNA expression in human epileptic hippocampi.
Main Results:
- 73 miRNAs showed significant expression changes, with 36 up-regulated and 37 down-regulated.
- RT-qPCR confirmed significant upregulation of miR-352 and miR-196b-5p, and downregulation of miR-128a-3p in H-PILO SE rats.
- miR-128a-3p was downregulated at all time points post-SE, miR-196b-5p was upregulated at 24h, and miR-352 was upregulated at 24h and in the chronic phase.
- Human epileptic hippocampi exhibited similar miRNA expression trends to the animal models.
Conclusions:
- Two novel dysregulated miRNAs, miR-196b-5p and miR-352, were identified in SE-induced epileptogenesis.
- miR-128a-3p downregulation was confirmed in epilepsy models.
- The findings suggest conserved roles for these miRNAs in MTLE pathogenesis across species, warranting further functional investigation.
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