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March 27, 2026Nature Immunology12 citationsOpen Access

A transcriptomic microglia taxonomy across mouse and human pathologies

CCChintan ChhatbarRSRoman SankowskiMSMichael Schulz

Key Points

  • To create a comprehensive taxonomy of microglial states across various brain disorders and mouse models.
  • Conducted single-cell RNA sequencing on over one million central nervous system cells.
  • Generated a taxonomy consisting of 27 superclusters and 192 clusters of myeloid cell states.
  • Utilized spatial transcriptomics to assess immune cell organization in tissue.
  • Performed in vivo perturbations to evaluate signaling dependencies in microglial states.
  • Established a taxonomic framework that is largely conserved across diseases.
  • Demonstrated the dependency of activation-associated microglial states on interferon and colony-stimulating factor 1 receptor signaling.
  • Mapped interactions of immune cell states within the local cellular environment.

Abstract

Abstract Single-cell studies have revealed substantial microglial diversity in development, homeostasis and disease. However, a framework enabling comparison and stratification of microglial states across contexts is needed. Here we generated an atlas of myeloid cell states by single-cell RNA sequencing more than one million central nervous system cells from more than 30 physiological and pathological conditions. This atlas enables us to establish a comprehensive taxonomy of myeloid cell states across brain disorders and related mouse models, comprising 27 superclusters and 192 clusters that are prevalent across diseases and largely conserved. We augment this taxonomic framework with spatial transcriptomics to map how immune cell states are organized within tissue and interact with their local cellular environment. Using in vivo perturbations, we also show that activation-associated microglial states are dependent on interferon and colony-stimulating factor 1 receptor signaling. Together, these findings provide a spatially aware taxonomic framework for central nervous system immune cells in health and disease.

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Cite This Study

Chhatbar et al. (2026) studied this question.

synapsesocial.com/papers/69c6204c15a0a509bde18c24https://doi.org/10.1038/s41590-026-02472-z
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