Astrocyte heterogeneity reveals region-specific astrogenesis in the white matter.

Abstract:

Astrocyte heterogeneity has been well explored, but our understanding of white matter (WM) astrocytes and their distinctions from gray matter (GM) astrocytes remains limited. Here, we compared astrocytes from cortical GM and WM/corpus callosum (WM/CC) using single-cell RNA sequencing and spatial transcriptomics of the murine forebrain. The comparison revealed similarities but also significant differences between WM and GM astrocytes, including cytoskeletal and metabolic hallmarks specific to WM astrocytes with molecular properties also shared with human WM astrocytes. When we compared murine astrocytes from two different WM regions, the cortex and cerebellum, we found that they exhibited distinct, region-specific molecular properties, with the cerebellum lacking, for example, a specific cluster of WM astrocytes expressing progenitor and proliferation genes. Functional experiments confirmed astrocyte proliferation in the WM/CC, but not in the cerebellar WM, suggesting that the WM/CC may be a source of continued astrogenesis.

SEEK ID: http://lmmeisd-2.srv.mwn.de/publications/104

PubMed ID: 39994409

DOI: 10.1038/s41593-025-01878-6

Projects: SyNergy: Published Datasets

Publication type: Journal

Journal: Nature neuroscience

Citation: Nature neuroscience,28(3):457-469

Date Published: 24th Feb 2025

URL:

Registered Mode: manually

Authors: Riccardo Bocchi, Manja Thorwirth, Tatiana Simon-Ebert, Christina Koupourtidou, Solène Clavreul, Keegan Kolf, Patrizia Della Vecchia, Sara Bottes, Sebastian Jessberger, Jiafeng Zhou, Gulzar Wani, Gregor-Alexander Pilz, Jovica Ninkovic, Annalisa Buffo, Swetlana Sirko, Magdalena Götz, Judith Fischer-Sternjak

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Citation
Bocchi, R., Thorwirth, M., Simon-Ebert, T., Koupourtidou, C., Clavreul, S., Kolf, K., Della Vecchia, P., Bottes, S., Jessberger, S., Zhou, J., Wani, G., Pilz, G.-A., Ninkovic, J., Buffo, A., Sirko, S., Götz, M., & Fischer-Sternjak, J. (2025). Astrocyte heterogeneity reveals region-specific astrogenesis in the white matter. In Nature Neuroscience (Vol. 28, Issue 3, pp. 457–469). Springer Science and Business Media LLC. https://doi.org/10.1038/s41593-025-01878-6
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Created: 26th Nov 2025 at 15:25

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