Aug 2026· iScience· Vol 29, pp. 117228· 0 citations· 69 references
Medicine
TL;DR
This dataset defines transcriptomic programs underlying key cellular alterations in TLE, enabling mechanistic dissection of epileptogenesis, and term this microglia population epilepsy-associated microglia (EAM).
Abstract
Summary Temporal lobe epilepsy (TLE) is the most common acquired epilepsy, causing refractory seizures and cognitive deficits. We performed single-nucleus RNA sequencing on hippocampal tissue from mice 3 and 6 weeks following pilocarpine-induced status epilepticus, a robust model of TLE. Epilepsy samples showed reductions in Cck and Lamp5-Lhx6 interneuron subclusters, alongside increases in Cajal-Retzius cells, dentate granule (DG) cell precursors, and a mature DG cell subcluster. Among glia, an astrocyte subcluster and a markedly expanded microglia sublcuster were increased. We term this microglia population epilepsy-associated microglia (EAM). The transcriptomic profile of EAM overlaps with microglia described in models of Alzheimer’s disease and traumatic brain injury, including enrichment of Myo1e and Igf1. EAM display amoeboid morphology, can be found in clumps around pyramidal and granule cell body layers, and exhibit enlarged vesicles and mitochondria. Cell-cell interaction analysis predicts DG cells as their primary interaction partners. This dataset defines transcriptomic programs underlying key cellular alterations in TLE, enabling mechanistic dissection of epileptogenesis.
Data show that LRRK2-G2019S impairs astrocyte specification and predisposes to a senescent phenotype, which contributes to the acquisition of a senescent-like phenotype in Parkinson’s disease patients.
Lisa M. Smits, S. Magni, K. Grzyb et al.· npj Parkinson's Disease· 0 citations
BACKGROUND
Traumatic brain injury (TBI) remains a leading cause of mortality and long-term neurological disability worldwide. The cellular heterogeneity and intercellular communication in the injured brain remain incompletely defined, particularly the astrocyte-neuron crosstalk that could drive potential interventions....
Fu Zhao, Lu-Xi Cao, Jia-Nan Chen et al.· Brain Research· 0 citations
Structural remodeling of the dentate gyrus is a hallmark of temporal lobe epilepsy (TLE), yet the underlying molecular mechanisms remain incompletely understood. Nuclear distribution element-like 1 (Ndel1), a cytoskeleton-associated protein involved in neuronal migration and dendritic development, has not been characte...
Jing Xu, Lin Zhu, Lu Chen et al.· Neuroscience· 0 citations
Increased white matter (WM) heterotopic neurons are a pathological feature observed in various neurological and psychiatric disorders. Mild malformation of cortical development with oligodendroglial hyperplasia in epilepsy (MOGHE) is a drug-resistant epilepsy-associated cortical malformation characterized by increased...
Nao K. N. Tabe, S. Miyashita, Kaoru Yagita et al.· bioRxiv· 0 citations
AIMS
This study aims to systematically identify the cellular drivers of brain microenvironmental imbalance during Alzheimer's disease (AD) progression by integrating high-resolution single-nucleus RNA sequencing (snRNA-seq) with intercellular communication analyses. In the work, the functional transitions and metabolic...
Xue-Man Xie, Wen-Jing Liu, Long-Chao Chen et al.· Life Science· 0 citations
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