例如:"lncRNA", "apoptosis", "WRKY"

Interleukin 22 disrupts pancreatic function in newborn mice expressing IL-23.

Nat Commun. 2019 Oct 04;10(1):4517
Lili Chen 1 , Valentina Strohmeier 2 , Zhengxiang He 1 , Madhura Deshpande 1 , Jovani Catalan-Dibene 1 , Scott K Durum 3 , Thomas M Moran 4 , Thomas Kraus 4 , Huabao Xiong 1 , Jeremiah J Faith 5 , Chhinder P Sodhi 6 , David J Hackam 6 , Sergio A Lira 7 , Glaucia C Furtado 8
Lili Chen 1 , Valentina Strohmeier 2 , Zhengxiang He 1 , Madhura Deshpande 1 , Jovani Catalan-Dibene 1 , Scott K Durum 3 , Thomas M Moran 4 , Thomas Kraus 4 , Huabao Xiong 1 , Jeremiah J Faith 5 , Chhinder P Sodhi 6 , David J Hackam 6 , Sergio A Lira 7 , Glaucia C Furtado 8
+ et al

[No authors listed]

Author information
  • 1 Precision Immunology Institute, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.
  • 2 Faculty of Biology, University of Freiburg, Schaenzlestrasse 1, 79104, Freiburg, Germany.
  • 3 Center for Cancer Research, National Cancer Institute, Frederick, MD, 21702, USA.
  • 4 Center for Therapeutic Antibody Development, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.
  • 5 Institute for Genomics and Multiscale Biology, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.
  • 6 Division of General Pediatric Surgery, Johns Hopkins University and Bloomberg Children's Center, Johns Hopkins Hospital, Baltimore, MD, 21287, USA.
  • 7 Precision Immunology Institute, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA. sergio.lira@mssm.edu.
  • 8 Precision Immunology Institute, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA. glaucia.furtado@mssm.edu.

摘要


Neonatal inflammatory diseases are associated with severe morbidity, but the inflammatory factors underlying them and their potential effector mechanisms are poorly defined. Here we show that necrotizing enterocolitis in neonate mice is accompanied by elevation of IL-23 and IL-22 and decreased production of pancreatic enzymes. These phenotypes are mirrored in neonate mice overexpressing IL-23 in CX3CR1+ myeloid cells or in keratinocytes. The mice fail to grow and die prematurely, displaying systemic inflammation, nutrient malabsorption and decreased expression of intestinal and pancreatic genes mediating digestion and absorption of carbohydrates, proteins, and lipids. Germ-free environment improves, and genetic ablation of IL-22 restores normal growth in mice overexpressing IL-23. Mechanistically, IL-22 acts directly at the level of pancreatic acinar cells to decrease expression of the pancreas associated transcription factor 1a (PTF1a). These results show that augmented production of IL-23 and IL-22 in early life has a negative impact on pancreatic enzyme secretion and food absorption.