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Updated: Apr 17, 2026

Induction of Intestinal Inflammation by Adoptive Transfer of CBir1 TCR Transgenic CD4+ T Cells to Immunodeficient Mice
Published on: December 16, 2021
Reprogramming of monocytes by GM-CSF contributes to regulatory immune functions during intestinal inflammation
Jan Däbritz1, Toni Weinhage2, Georg Varga2
1Department of Pediatric Rheumatology and Immunology, University Children's Hospital Münster, Münster 48149, Germany; Interdisciplinary Center of Clinical Research, University Hospital Münster, Münster 48149, Germany; Gastrointestinal Research in Inflammation & Pathology, Murdoch Children's Research Institute, The Royal Children's Hospital Melbourne, Parkville 3052, Victoria, Australia; Department of Pediatrics, University of Melbourne, Melbourne Medical School, Parkville 3052, Victoria, Australia; Jan.Daebritz@uni-muenster.de.
Abstract:
Human and murine studies showed that GM-CSF exerts beneficial effects in intestinal inflammation. To explore whether GM-CSF mediates its effects via monocytes, we analyzed effects of GM-CSF on monocytes in vitro and assessed the immunomodulatory potential of GM-CSF-activated monocytes (GMaMs) in vivo. We used microarray technology and functional assays to characterize GMaMs in vitro and used a mouse model of colitis to study GMaM functions in vivo. GM-CSF activates monocytes to increase adherence, migration, chemotaxis, and oxidative burst in vitro, and primes monocyte response to secondary microbial stimuli. In addition, GMaMs accelerate epithelial healing in vitro. Most important, in a mouse model of experimental T cell-induced colitis, GMaMs show therapeutic activity and protect mice from colitis. This is accompanied by increased production of IL-4, IL-10, and IL-13, and decreased production of IFN-γ in lamina propria mononuclear cells in vivo. Confirming this finding, GMaMs attract T cells and shape their differentiation toward Th2 by upregulating IL-4, IL-10, and IL-13 in T cells in vitro. Beneficial effects of GM-CSF in Crohn's disease may possibly be mediated through reprogramming of monocytes to simultaneously improved bacterial clearance and induction of wound healing, as well as regulation of adaptive immunity to limit excessive inflammation.
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