ReviewNeural regeneration research2023
MicroRNAs as potential biomarkers in temporal lobe epilepsy and mesial temporal lobe epilepsy.
Review in Neural regeneration research, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers, 1 of them a synthesis that pooled it.
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Who cites it
15 citing papers in PubMed, 1 synthesis or guideline pooled it, 34 citations in OpenAlex.
- MicroRNAs as Biomarkers of Surgical Outcome in Mesial Temporal Lobe Epilepsy: A Systematic Review.International journal of molecular sciences · 2023Pooled it
- Human biomarker navigator.iMeta · 2026Review
- Circulating microRNAs as diagnostic biomarkers and pathogenic mediators in type 2 diabetic retinopathy: a systematic review.Acta diabetologica · 2026Review
- Alterations in glymphatic system and brain morphology in patients with temporal lobe epilepsy.BMC medical imaging · 2026Article
- Sleep and circadian rhythm disruptions in animal models of temporal lobe epilepsy.Frontiers in neuroscience · 2026Review
- How Soon is Soon Enough? Consideration of Timing and Disease Etiology for microRNAs in Epilepsy.Epilepsy currents · 2025Review
- MicroRNAs as Epigenetic Biomarkers of Pathogenetic Mechanisms of the Metabolic Syndrome Induced by Antiseizure Medications: Systematic Review.Journal of clinical medicine · 2025Review
- LncRNA ILF3-AS1 mediates oxidative stress and inflammation through miR-504-3p/HMGB1 axis in a cellular model of temporal lobe epilepsy.Brain and behavior · 2024Article
- Integrating Multi-omics Data for Alzheimer's Disease to Explore Its Biomarkers Via the Hypergraph-Regularized Joint Deep Semi-Non-Negative Matrix Factorization Algorithm.Journal of molecular neuroscience : MN · 2024Article
- Circulating miRNAs as Novel Clinical Biomarkers in Temporal Lobe Epilepsy.Non-coding RNA · 2024Review
- microRNA profilings identify plasma biomarkers and targets associated with pediatric epilepsy patients.Pediatric research · 2024Article
- Regulation of specific abnormal calcium signals in the hippocampal CA1 and primary cortex M1 alleviates the progression of temporal lobe epilepsy.Neural regeneration research · 2024Article
- Cerebellar white and gray matter abnormalities in temporal lobe epilepsy: a voxel-based morphometry study.Frontiers in neuroscience · 2024Article
- Identification of ferroptosis-related genes in acute phase of temporal lobe epilepsy based on bioinformatic analysis.BMC genomics · 2023Article
- The dysregulation of miRNAs in epilepsy and their regulatory role in inflammation and apoptosis.Functional & integrative genomics · 2023Review
Corrections and comments
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Authors and funding
2 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Temporal lobe epilepsy is the most common form of focal epilepsy in adults, accounting for one third of all diagnosed epileptic patients, with seizures originating from or involving mesial temporal structures such as the hippocampus, and many of these patients being refractory to treatment with anti-epileptic drugs. Temporal lobe epilepsy is the most common childhood neurological disorder and, compared with adults, the symptoms are greatly affected by age and brain development. Diagnosis of temporal lobe epilepsy relies on clinical examination, patient history, electroencephalographic recordings, and brain imaging. Misdiagnosis or delay in diagnosis is common. A molecular biomarker that could distinguish epilepsy from healthy subjects and other neurological conditions would allow for an earlier and more accurate diagnosis and appropriate treatment to be initiated. Among possible biomarkers of pathological changes as well as potential therapeutic targets in the epileptic brain are microRNAs. Most of the recent studies had performed microRNA profiling in body fluids such as blood plasma and blood serum and brain tissues such as temporal cortex tissue and hippocampal tissue. A large number of microRNAs were dysregulated when compared to healthy controls and with some overlap between individual studies that could serve as potential biomarkers. For example, in adults with temporal lobe epilepsy, possible biomarkers are miR-199a-3p in blood plasma and miR-142-5p in blood plasma and blood serum. In adults with mesial temporal lobe epilepsy, possible biomarkers are miR-153 in blood plasma and miR-145-3p in blood serum. However, in many of the studies involving patients who receive one or several anti-epileptic drugs, the influence of these on microRNA expression in body fluids and brain tissues is largely unknown. Further studies are warranted with children with temporal lobe epilepsy and consideration should be given to utilizing mouse or rat and non-human primate models of temporal lobe epilepsy. The animal models could be used to confirm microRNA findings in human patients and to test the effects of targeting specific microRNAs on disease progression and behavior.
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