Cell type-specific isolation and transcriptomic profiling informs glial pathology in human temporal lobe epilepsy
Tome-Garcia, J.; Nudelman, G.; Mussa, Z.; Caballero, E.; Jiang, Y.; Beaumont, K. G.; Wang, Y.-C.; Sebra, R. G.; Akbarian, S.; Pinto, D.; Zaslavsky, E.; Tsankova, N. M.
Show abstract
The pathophysiology of epilepsy underlies complex network dysfunction, the cell-type-specific contributions of which remain poorly defined in human disease. In this study, we developed a strategy that simultaneously isolates neuronal, astrocyte and oligodendroglial progenitor (OPC)-enriched nuclei from human fresh-frozen neocortex and applied it to characterize the distinct transcriptome of each cell type in temporal lobe epilepsy (TLE) surgical samples. Differential RNA-seq analysis revealed several dysregulated pathways in neurons, OPCs, and astrocytes, and disclosed an immature phenotype switch in TLE astrocytes. An independent single cell RNA-seq TLE dataset uncovered a hybrid population of cells aberrantly co-expressing canonical astrocyte and OPC-like progenitor markers (GFAP+OLIG2+ glia), which we corroborated in-situ in human TLE samples, and further demonstrated their emergence after chronic seizure injury in a mouse model of status epilepticus. In line with their immature signature, a subset of human TLE glia were also abnormally proliferative, both in-vivo and in-vitro. Generally, this analysis validates the utility of the proposed cell type-specific isolation strategy to study glia-specific changes ex vivo using fresh-frozen human samples, and specifically, it delineates an aberrant glial phenotype in human TLE specimens.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Aberrant pace of cortical neuron development in brain organoids from patients with 22q11.2 deletion syndrome-associated schizophrenia 95%
- Compartments in medulloblastoma with extensive nodularity are connected through differentiation along the granular precursor lineage 95%
- Molecular Signatures of Resilience to Alzheimer's Disease in Neocortical Layer 4 Neurons 95%
Similar papers in this journal
- Distinct changes to hippocampal and medial entorhinal circuits emerge across the progression of cognitive deficits in epilepsy 96%
- Defining the molecular identity and morphology of glia limitans superficialis astrocytes in mouse and human 96%
- Single cell spatial transcriptomic and translatomic profiling of dopaminergic neurons in health, aging and disease 94%
Similar papers in this journal
- Shared and distinct ultra-rare genetic risk for diverse epilepsies: A whole-exome sequencing study of 54,423 individuals across multiple genetic ancestries 95%
- Augmentation of a neuroprotective myeloid state by hematopoietic cell transplantation 94%
- Comparative molecular landscapes of immature neurons in the mammalian dentate gyrus across species reveal special features in humans 94%
Similar papers in this journal
- Identifying cellular markers of focal cortical dysplasia type II with cell-type deconvolution and single-cell signatures 96%
- CUX2 deficiency causes facilitation of excitatory synaptic transmission onto hippocampus and increased seizure susceptibility to kainate 95%
- Integrative Analysis of Epilepsy-Associated Genes Reveals Expression-Phenotype Correlations 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.