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MicroRNAs as biomarkers and treatment targets in status epilepticus
Elizabeth Brindley1, Thomas D M Hill2, David C Henshall2
1Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland, Dublin, Ireland.
Abstract:
Microribonucleic acids (miRNAs) are short noncoding ribonucleic acids (RNAs) that have been proposed as potential biomarkers for epilepsy, acute seizures, and status epilepticus. Various properties support their potential in this regard, including relative stability and amenability to rapid quantitation in biofluids. Several miRNAs are enriched in the brain and within specific cell types. Dysregulation of miRNAs has been reported in brain regions damaged by status epilepticus and in resected brain tissue from patients with drug-resistant epilepsy. Silencing miRNAs using antisense-like oligonucleotides termed antagomirs has been reported to suppress evoked and spontaneous seizures in animal models, indicating therapeutic applications. The prospect of miRNAs as mechanistic biomarkers is supported by recent studies showing blood levels of brain-enriched miRNAs increase after status epilepticus in rodents, and clinical studies have identified miRNAs upregulated in human cerebrospinal fluid after status epilepticus. It remains unproven, however, whether there are miRNAs that uniquely identify acute seizures, chronic epilepsy, or the process of epileptogenesis. Finally, efforts have turned to the challenge of proving that some of the circulating miRNAs actually originate from the brain. New models that feature a biochemically-labeled protein involved in miRNA function and restricted to specific brain cell types offer opportunities to resolve this issue. This review summarizes recent progress on miRNAs as diagnostic biomarkers of status epilepticus and considers some of the unanswered questions and future directions. This article is part of the Special Issue "Proceedings of the 7th London-Innsbruck Colloquium on Status Epilepticus and Acute Seizures.
Insights
Microribonucleic acids (miRNAs) show promise as biomarkers for epilepsy and seizures due to their stability and brain enrichment. Research is exploring their diagnostic potential and therapeutic applications in neurological disorders.
Area of Science:
- Neuroscience
- Molecular Biology
- Biomarker Discovery
Background:
- Microribonucleic acids (miRNAs) are short noncoding RNAs with potential as biomarkers for epilepsy and seizures.
- Their stability and quantitation in biofluids, brain enrichment, and dysregulation in epilepsy support this role.
- Antagomir-mediated silencing of miRNAs has shown therapeutic potential in animal seizure models.
Purpose of the Study:
- To review progress on miRNAs as diagnostic biomarkers for status epilepticus.
- To discuss unanswered questions and future research directions in the field.
- To explore the potential of miRNAs in identifying acute seizures, chronic epilepsy, and epileptogenesis.
Main Methods:
- Review of recent studies on miRNA dysregulation in epilepsy.
- Analysis of research on miRNA levels in biofluids (blood, cerebrospinal fluid) after seizures.
- Discussion of novel models for tracing brain-derived miRNA origins.
Main Results:
- Dysregulated miRNAs are found in epilepsy-affected brain regions and resected tissues.
- Blood levels of brain-enriched miRNAs increase after status epilepticus in rodents.
- Clinical studies show upregulated miRNAs in human cerebrospinal fluid post-status epilepticus.
Conclusions:
- miRNAs hold promise as diagnostic biomarkers for status epilepticus and potentially other epilepsy forms.
- Further research is needed to confirm unique miRNA signatures for different epilepsy conditions and to prove their brain origin.
- Therapeutic strategies targeting miRNAs are emerging, with antagomirs showing promise in preclinical models.
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