Children Developing Celiac Disease Have a Distinct and Proinflammatory Gut Microbiota in the First 5 Years of Life
Huang, Q.; Yang, Y.; Tolstikov, V.; Kiebish, M. A.; ludvigsson, J. F.; Palm, N. W.; Ludvigsso, J.; ALTINDIS, E.
Show abstract
Celiac disease (CD) is an autoimmune disorder triggered by gluten consumption. To identify the role of gut microbes in CD onset, we performed a longitudinal study focusing on two important phases of gut microbiota development at ages 2.5 and 5 (n=16). We obtained samples from children who developed CD during or after the study (CD progressors) and age, sex, and HLA-matched healthy controls. CD progressors had a distinct gut microbiota composition and IgA-sequencing identified unique IgA targets in the gut. Three cytokines, one chemokine, and 19 plasma metabolites were significantly altered in CD progressors at age 5. Feeding C57BL/6J mice with taurodeoxycholic acid (TDCA), a 2-fold increased microbiota-derived metabolite in CD progressors, caused villous atrophy, increased intraepithelial lymphocytes (IELs), CD4+ T-cells, Natural Killer cells, and Qa-1 expression on T-cells while decreasing T-regulatory cells in IELs. Thus, TDCA drives inflammation in the small intestines that potentially contribute to the CD onset. HighlightsO_LICD progressors have a distinct gut microbiome composition compared to healthy controls in two important phases of gut microbiota development (age 2.5 and 5 years) C_LIO_LICD progressors have more IgA-coated bacteria in their gut at age 5 compared to healthy controls. Further, IgA-sequencing identified unique bacterial targets in CD progressors. C_LIO_LIThree plasma proinflammatory cytokines and a chemokine were increased in CD progressors years before diagnosis, indicating an early inflammatory response. C_LIO_LIWe identified 19 metabolites that are significantly altered in CD progress at age 5 and microbiota-derived TDCA increased two-fold. C_LIO_LITDCA treatment in B6 mice increased CD4+ cells and NK cells while decreasing CD8+ T-regulatory (Treg) cells. It also increased Qa-1 expression on immune cells. C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Peptidoglycan-Chi3l1 interaction shapes gut microbiota in intestinal mucus layer 93%
- A hepatocyte-specific transcriptional program driven by Rela and Stat3 exacerbates experimental colitis in mice by modulating bile synthesis 93%
- Macrophages regulate gastrointestinal motility through complement component 1q 93%
Similar papers in this journal
- Dynamics of gut microbiome – mediated bile acid metabolism in progression to islet autoimmunity 95%
- The clinical drug candidate ebselen attenuates inflammation and promotes microbiome recovery after antibiotic treatment for Clostridium difficile infection 94%
- A Living Organoid Biobank of Crohn's Disease Patients Reveals Molecular Subtypes for Personalized Therapeutics 93%
Similar papers in this journal
- Lysophosphatidic acid-mediated GPR35 signaling in CX3CR1+ macrophages regulates the intestinal cytokine milieu 95%
- Mucolytic bacteria license pathobionts to acquire host-derived nutrients during dietary nutrient restriction 95%
- Immune signaling mediates stromal changes to support epithelial reprogramming in Celiac duodenum 95%
Similar papers in this journal
- Assessing Cellular and Transcriptional diversity of IIeal Mucosa amongst Treatment Naïve and Treated Crohn’s disease 94%
- Inflammation induced Th17 cells synergize with the inflammation-trained microbiota to mediate host-resiliency against intestinal injury 93%
- M1 and M2 macrophages differentially regulate colonic crypt renewal. 92%