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A single-cell atlas deconstructs heterogeneity across multiple models in murine traumatic brain injury and identifies novel cell-specific targets

  • Ruchira M. Jha*
  • , Dhivyaa Rajasundaram
  • , Chaim Sneiderman
  • , Brent T. Schlegel
  • , Casey O'Brien
  • , Zujian Xiong
  • , Keri Janesko-Feldman
  • , Ria Trivedi
  • , Vincent Vagni
  • , Benjamin E. Zusman
  • , Joshua S. Catapano
  • , Adam Eberle
  • , Shashvat M. Desai
  • , Ashutosh P. Jadhav
  • , Sandra Mihaljevic
  • , Margaux Miller
  • , Sudhanshu Raikwar
  • , Anupama Rani
  • , Jarrod Rulney
  • , Shima Shahjouie
  • Itay Raphael, Aditya Kumar, Chia Ling Phuah, Ethan A. Winkler, Dennis W. Simon, Patrick M. Kochanek, Gary Kohanbash
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

60 Scopus citations

Abstract

Traumatic brain injury (TBI) heterogeneity remains a critical barrier to translating therapies. Identifying final common pathways/molecular signatures that integrate this heterogeneity informs biomarker and therapeutic-target development. We present the first large-scale murine single-cell atlas of the transcriptomic response to TBI (334,376 cells) across clinically relevant models, sex, brain region, and time as a foundational step in molecularly deconstructing TBI heterogeneity. Results were unique to cell populations, injury models, sex, brain regions, and time, highlighting the importance of cell-level resolution. We identify cell-specific targets and previously unrecognized roles for microglial and ependymal subtypes. Ependymal-4 was a hub of neuroinflammatory signaling. A distinct microglial lineage shared features with disease-associated microglia at 24 h, with persistent gene-expression changes in microglia-4 even 6 months after contusional TBI, contrasting all other cell types that mostly returned to naive levels. Regional and sexual dimorphism were noted. CEREBRI, our searchable atlas (https://shiny.crc.pitt.edu/cerebri/), identifies previously unrecognized cell subtypes/molecular targets and is a leverageable platform for future efforts in TBI and other diseases with overlapping pathophysiology.

Original languageEnglish
Pages (from-to)3069-3088.e4
JournalNeuron
Volume112
Issue number18
DOIs
StatePublished - 25 Sep 2024
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2024 The Authors

Keywords

  • ependymal cells
  • heterogeneity
  • microglia
  • single-cell transcriptomic atlas
  • traumatic brain injury

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