Multi-centered T cell repertoire profiling identifies novel alterations in the immune repertoire of individuals with inflammatory bowel disease and validates previous findings
Mahdy, A. K. H.; ElAbd, H.; Kokubun, E. E.; Kriukova, V.; Pesesky, M.; May, D. H.; Olbjorn, C.; Perminow, G.; Bengtson, M.-B.; Ricanek, P.; Andersen, S.; Detlie, T. E.; Kristensen, V. A.; Moum, B.; Vatn, M.; Bokemeyer, B.; Hov, J.; Halfvarsson, J.; Schreiber, S.; the IBSEN and IBSEN-III study group, ; Howie, B.; Robins, H. S.; Hoivik, M. L.; Franke, A.
Show abstract
IntroductionIBD is an incurable immune-mediated inflammatory disease (IMID), affecting the gut with a high rate of primary- and secondary-loss-of-response to therapy. By investigating the T cell receptor repertoire of individuals with IBD, novel therapeutic and preventive strategies can be identified, and a better understanding of IBD can be obtained. MethodsWhereas most studies have so far focused on the more diverse T cell receptor beta (TRB) repertoire, we here profiled the alpha (TRA) repertoire of three cohorts containing treatment-naive and treated individuals in addition to individuals living with the disease for >20 years, resulting in an exhaustive dataset containing the TRA repertoire of 2,151 individuals. ResultsUsing the generated datasets, we were able to replicate previous findings describing the expansion of Crohns-associated invariant T (CAIT) cells in individuals with Crohns disease (CD) in the three cohorts. Using a hypothesis-free statistical testing framework, we identified clonotypes that were associated with the disease at its different stages, e.g., at the time of diagnosis and decades post-diagnosis. By conducting a meta-analysis across the three cohorts, we were able to identify a set of clonotypes that were associated with the disease regardless of its stage. We validated our findings in a previously published independent test dataset from a German cohort, showing the robustness of the identified sets of clonotypes. ConclusionThe identified clonotypes are potential novel therapeutic targets to treat IBD, e.g., through targeted depletion. These clonotypes are also of major interest as they can be investigated in a targeted fashion to identify culprit antigen(s) in IBD.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Specific gut pathobionts escape antibody coating and are enriched during flares in patients with severe Crohn's disease 97%
- Low coverage whole genome sequencing of low-grade dysplasia strongly predicts colorectal cancer risk in ulcerative colitis 94%
- CARD9 in Neutrophils Protects from Colitis and Controls Mitochondrial Metabolism and Cell Survival 94%
Similar papers in this journal
- Antigen-driven expansion of public clonal T cell populations in inflammatory bowel diseases 97%
- Intestinal receptor of SARS-CoV-2 in inflamed IBD tissue is downregulated by HNF4A in ileum and upregulated by interferon regulating factors in colon 95%
- Susceptibility to inflammatory bowel diseases promotes invasive carcinomas in a murine model of ATF6-driven colon cancer 95%
Similar papers in this journal
- High throughput profiling of the B cell repertoire identifies systematic changes in the repertoire of individuals with Crohn's disease 96%
- Studying the cellular basis of small bowel enteropathy using high-parameter flow cytometry in mouse models of primary antibody deficiency 95%
- Neutrophil-fibroblast crosstalk drives immunofibrosis in Crohn’s disease through IFNα pathway 94%
Similar papers in this journal
- Transcriptional Atlas of Ileal-Anal Pouch Immune Cells from Ulcerative Colitis Patients 97%
- Tofacitinib uptake by patient-derived intestinal organoids predicts individual clinical responsiveness 95%
- Crohn's patients and healthy infants share immunodominant B cell response to commensal flagellin peptide epitopes 95%
Similar papers in this journal
- Multiomic analysis reveals cellular and epigenetic plasticity in intestinal pouches of ulcerative colitis patients 96%
- A Specialized Epithelial Cell Type Regulating Mucosal Immunity and Driving Human Crohn's Disease 96%
- Tissue factor-dependent colitogenic CD4+ T cell thrombogenicity is regulated by activated protein C signalling. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.