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The spatial transcriptomic landscape of the healing mouse intestine following damage.

Sara M ParigiLudvig LarssonSrustidhar DasRicardo Omar Ramirez FloresAnnika FredeKumar P TripathiOscar E DiazKatja A SelinRodrigo A MoralesXinxin LuoGustavo MonasterioCamilla EngblomNicola GaglianiJulio Saez-RodriguezJoakim LundebergEduardo J Villablanca
Published in: Nature communications (2022)
The intestinal barrier is composed of a complex cell network defining highly compartmentalized and specialized structures. Here, we use spatial transcriptomics to define how the transcriptomic landscape is spatially organized in the steady state and healing murine colon. At steady state conditions, we demonstrate a previously unappreciated molecular regionalization of the colon, which dramatically changes during mucosal healing. Here, we identified spatially-organized transcriptional programs defining compartmentalized mucosal healing, and regions with dominant wired pathways. Furthermore, we showed that decreased p53 activation defined areas with increased presence of proliferating epithelial stem cells. Finally, we mapped transcriptomics modules associated with human diseases demonstrating the translational potential of our dataset. Overall, we provide a publicly available resource defining principles of transcriptomic regionalization of the colon during mucosal healing and a framework to develop and progress further hypotheses.
Keyphrases
  • single cell
  • rna seq
  • stem cells
  • endothelial cells
  • ulcerative colitis
  • gene expression
  • oxidative stress
  • public health
  • palliative care
  • transcription factor
  • cell therapy
  • mass spectrometry
  • risk assessment
  • heat shock