Cells of the human intestinal tract mapped across space and time

免疫系统 电池类型 炎症性肠病 疾病 胃肠道 肠神经系统 免疫学 炎症 细胞 生物 人体胃肠道 细胞生物学 神经科学 病理 医学 遗传学 生物化学
作者
Rasa Elmentaite,Natsuhiko Kumasaka,HW King,Kenny Roberts,M Dąbrowska,Sophie Pritchard,Liam Bolt,SF Vieira,Lira Mamanova,Ni Huang,Issac Goh,Emily Stephenson,Justin Engelbert,RA Botting,Aaron Fleming,Emma Dann,SN Lisgo,Matilda Katan,Susan R. Leonard,TRW Oliver
标识
DOI:10.1101/2021.04.07.438755
摘要

Abstract The cellular landscape of the human intestinal tract is dynamic throughout life, developing in utero and changing in response to functional requirements and environmental exposures. To comprehensively map cell lineages in the healthy developing, pediatric and adult human gut from ten distinct anatomical regions, as well as draining lymph nodes, we used singlecell RNA-seq and VDJ analysis of roughly one third of a million cells. This reveals the presence of BEST4+ absorptive cells throughout the human intestinal tract, demonstrating the existence of this cell type beyond the colon for the first time. Furthermore, we implicate IgG sensing as a novel function of intestinal tuft cells, and link these cells to the pathogenesis of inflammatory bowel disease. We define novel glial and neuronal cell populations in the developing enteric nervous system, and predict cell-type specific expression of Hirschsprung’s disease-associated genes. Finally, using a systems approach, we identify key cell players across multiple cell lineages driving secondary lymphoid tissue formation in early human development. We show that these programs are adopted in inflammatory bowel disease to recruit and retain immune cells at the site of inflammation. These data provide an unprecedented catalogue of intestinal cells, and new insights into cellular programs in development, homeostasis and disease.
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