ArticleAdvanced science (Weinheim, Baden-Wurttemberg, Germany)2026
Elevated Apolipoprotein E Expression in Hippocampal Microglia Drives Temporal Lobe Epilepsy Progression.
Article in Advanced science (Weinheim, Baden-Wurttemberg, Germany), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Association of apolipoprotein E gene with risk, cognition, and prognosis of epilepsy.Human genetics · 2026Article
- Integrative single-cell and spatial transcriptomics combined with machine learning to discover complement-associated biomarkers in temporal lobe epilepsy with hippocampal sclerosis.Functional & integrative genomics · 2026Article
- Multilayer Validation Reveals a Glia-Associated Secretome Signature in Temporal Lobe Epilepsy.Journal of molecular neuroscience : MN · 2026Article
- APOE-Glia Crosstalk in Epilepsy: Mechanisms, Controversies, and Therapeutic Perspectives.Journal of inflammation research · 2026Review
- The associations between epilepsy, metabolism, and their clinical implications.Frontiers in endocrinology · 2026Review
- The spatial architecture of neuroimmune interactions in epilepsy.Frontiers in immunology · 2026Review
- Elevated Apolipoprotein E Expression in Hippocampal Microglia Drives Temporal Lobe Epilepsy Progression.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Microglial PD-1/PD-L1 axis in CNS demyelinating diseases: a dual immunoregulatory perspective.Frontiers in cellular neuroscience · 2026Review
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Authors and funding
11 authors.
Funding
Abstract
Temporal lobe epilepsy (TLE), the most common form of epilepsy, is primarily characterized by hippocampal sclerosis (HS). Microglia reactivity is a critical component of TLE pathogenesis, and apolipoprotein E (APOE) may be a potential mediator of these processes. However, its role in TLE progression remains unclear. Bioinformatics approaches with biomarker validation are integrated to elucidate APOE's role and hippocampal microglia in the mechanisms underlying TLE. APOE expression is significantly elevated in the hippocampal tissues of patients with TLE-HS and in TLE mouse models. Single-cell RNA sequencing reveals a subset of microglia with high APOE gene expression, which serves as the principal carrier of increased APOE during disease progression. Bioinformatic analyses, in vitro studies, and in vivo functional experiments utilizing TLE mouse models implicate these APOE-expressing microglia in regulating microglial differentiation, promoting neuroinflammation, neuronal apoptosis, and enhancing neuronal excitability. Genetic knockout of APOE mitigates gliosis, neuronal cell death, and seizure frequency in the hippocampus of epileptic mice. Additionally, APOE expression primarily induces significant alterations in glycerophospholipid metabolism and its associated metabolic derivatives within the epileptic microenvironment. Overall, APOE-expressing microglia are pivotal drivers of HS and TLE progression, positioning APOE and its downstream signaling pathways as promising therapeutic TLE targets.
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