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Updated: Jan 13, 2026

Classification of Neural Stem Cell Activation State In Vitro using Autofluorescence
Published on: April 12, 2024
A latent activated olfactory stem cell state revealed by single-cell transcriptomic and epigenomic profiling
Koen Van den Berge1, Dana Bakalar2, Hsin-Jung Chou3
1Department of Statistics, University of California, Berkeley, Berkeley, CA, USA; Department of Applied Mathematics, Computer Science and Statistics, Ghent University, Ghent, Belgium.
Abstract:
The olfactory epithelium is one of the few regions of the nervous system that sustains neurogenesis throughout life. Its experimental accessibility makes it especially tractable for studying molecular mechanisms that drive neural regeneration in response to injury. In this study, we used single-cell sequencing to identify transcriptional and epigenetic processes involved in determining olfactory epithelial stem cell fate during injury-induced regeneration. By combining gene expression and accessible chromatin profiles of individual lineage-traced olfactory stem cells, we identified transcriptional heterogeneity among activated stem cells at a stage when cell fates are being specified. We further identified a subset of resting cells that appears poised for activation, characterized by accessible chromatin around silent genes prior to their expression in response to injury. These results provide evidence for a latent activated stem cell state in which a subset of quiescent olfactory epithelial stem cells are epigenetically primed to support injury-induced regeneration.
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