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Publication : The Human and Mouse Enteric Nervous System at Single-Cell Resolution.

First Author  Drokhlyansky E Year  2020
Journal  Cell Volume  182
Issue  6 Pages  1606-1622.e23
PubMed ID  32888429 Mgi Jnum  J:296822
Mgi Id  MGI:6460190 Doi  10.1016/j.cell.2020.08.003
Citation  Drokhlyansky E, et al. (2020) The Human and Mouse Enteric Nervous System at Single-Cell Resolution. Cell 182(6):1606-1622.e23
abstractText  The enteric nervous system (ENS) coordinates diverse functions in the intestine but has eluded comprehensive molecular characterization because of the rarity and diversity of cells. Here we develop two methods to profile the ENS of adult mice and humans at single-cell resolution: RAISIN RNA-seq for profiling intact nuclei with ribosome-bound mRNA and MIRACL-seq for label-free enrichment of rare cell types by droplet-based profiling. The 1,187,535 nuclei in our mouse atlas include 5,068 neurons from the ileum and colon, revealing extraordinary neuron diversity. We highlight circadian expression changes in enteric neurons, show that disease-related genes are dysregulated with aging, and identify differences between the ileum and proximal/distal colon. In humans, we profile 436,202 nuclei, recovering 1,445 neurons, and identify conserved and species-specific transcriptional programs and putative neuro-epithelial, neuro-stromal, and neuro-immune interactions. The human ENS expresses risk genes for neuropathic, inflammatory, and extra-intestinal diseases, suggesting neuronal contributions to disease.
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