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A human autoimmune organoid model reveals IL-7 function in coeliac disease

  • António J. M. Santos,
  • Vincent van Unen,
  • Zhongqi Lin,
  • Steven M. Chirieleison,
  • Nhi Ha,
  • Arpit Batish,
  • Joshua E. Chan,
  • Jose Cedano,
  • Elisa T. Zhang,
  • Qinghui Mu,
  • Alexander Guh-Siesel,
  • Madeline Tomaske,
  • Deana Colburg,
  • Sushama Varma,
  • Shannon S. Choi,
  • Asbjørn Christophersen,
  • Ani Baghdasaryan,
  • Kathryn E. Yost,
  • Kasper Karlsson,
  • Andrew Ha,
  • Jing Li,
  • Hongjie Dai,
  • Zachary M. Sellers,
  • Howard Y. Chang,
  • James C. Y. Dunn,
  • Bing M. Zhang,
  • Elizabeth D. Mellins,
  • Ludvig M. Sollid,
  • Nielsen Q. Fernandez-Becker,
  • Mark M. Davis,
  • Calvin J. Kuo

摘要

In vitro models of autoimmunity are constrained by an inability to culture affected epithelium alongside the complex tissue-resident immune microenvironment. Coeliac disease (CeD) is an autoimmune disease in which dietary gluten-derived peptides bind to the major histocompatibility complex (MHC) class II human leukocyte antigen molecules (HLA)-DQ2 or HLA-DQ8 to initiate immune-mediated duodenal mucosal injury14. Here, we generated air–liquid interface (ALI) duodenal organoids from intact fragments of endoscopic biopsies that preserve epithelium alongside native mesenchyme and tissue-resident immune cells as a unit without requiring reconstitution. The immune diversity of ALI organoids spanned T cells, B and plasma cells, natural killer (NK) cells and myeloid cells, with extensive T-cell and B-cell receptor repertoires. HLA-DQ2.5-restricted gluten peptides selectively instigated epithelial destruction in HLA-DQ2.5-expressing organoids derived from CeD patients, and this was antagonized by blocking MHC-II or NKG2C/D. Gluten epitopes stimulated a CeD organoid immune network response in lymphoid and myeloid subsets alongside anti-transglutaminase 2 (TG2) autoantibody production. Functional studies in CeD organoids revealed that interleukin-7 (IL-7) is a gluten-inducible pathogenic modulator that regulates CD8+ T-cell NKG2C/D expression and is necessary and sufficient for epithelial destruction. Furthermore, endogenous IL-7 was markedly upregulated in patient biopsies from active CeD compared with remission disease from gluten-free diets, predominantly in lamina propria mesenchyme. By preserving the epithelium alongside diverse immune populations, this human in vitro CeD model recapitulates gluten-dependent pathology, enables mechanistic investigation and establishes a proof of principle for the organoid modelling of autoimmunity.