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Gliadin Nanoparticles Induce Immune Tolerance to Gliadin in Mouse Models of Celiac  Disease - ScienceDirect
Gliadin Nanoparticles Induce Immune Tolerance to Gliadin in Mouse Models of Celiac Disease - ScienceDirect

Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease  and Beyond: Trends in Molecular Medicine
Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease and Beyond: Trends in Molecular Medicine

Gliadin Nanoparticles Induce Immune Tolerance to Gliadin in Mouse Models of Celiac  Disease - ScienceDirect
Gliadin Nanoparticles Induce Immune Tolerance to Gliadin in Mouse Models of Celiac Disease - ScienceDirect

Plasma Cells Are the Most Abundant Gluten Peptide MHC-expressing Cells in  Inflamed Intestinal Tissues From Patients With Celiac Disease -  ScienceDirect
Plasma Cells Are the Most Abundant Gluten Peptide MHC-expressing Cells in Inflamed Intestinal Tissues From Patients With Celiac Disease - ScienceDirect

Lessons from rodent models in celiac disease | Mucosal Immunology
Lessons from rodent models in celiac disease | Mucosal Immunology

Role of the gut microbiota in the pathogenesis of coeliac disease and  potential therapeutic implications | SpringerLink
Role of the gut microbiota in the pathogenesis of coeliac disease and potential therapeutic implications | SpringerLink

Mouse Model Changes Study of Immune Response in Celiac Disease | Celiac  Disease Foundation
Mouse Model Changes Study of Immune Response in Celiac Disease | Celiac Disease Foundation

Gluten induces coeliac-like disease in sensitised mice involving IgA, CD71  and transglutaminase 2 interactions that are prevented by probiotics |  Laboratory Investigation
Gluten induces coeliac-like disease in sensitised mice involving IgA, CD71 and transglutaminase 2 interactions that are prevented by probiotics | Laboratory Investigation

New mouse model of celiac disease could lead to new treatments | University  of Chicago News
New mouse model of celiac disease could lead to new treatments | University of Chicago News

Lessons from rodent models in celiac disease | Mucosal Immunology
Lessons from rodent models in celiac disease | Mucosal Immunology

Characterization of T‐cell receptor transgenic mice recognizing  immunodominant HLA‐DQ2.5‐restricted gluten epitopes - Lindstad - 2021 -  European Journal of Immunology - Wiley Online Library
Characterization of T‐cell receptor transgenic mice recognizing immunodominant HLA‐DQ2.5‐restricted gluten epitopes - Lindstad - 2021 - European Journal of Immunology - Wiley Online Library

Mimicking coeliac disease in mice | Nature Reviews Gastroenterology &  Hepatology
Mimicking coeliac disease in mice | Nature Reviews Gastroenterology & Hepatology

Celiac Disease
Celiac Disease

Celiac disease‐on‐chip: Modeling a multifactorial disease in vitro -  Moerkens - 2019 - United European Gastroenterology Journal - Wiley Online  Library
Celiac disease‐on‐chip: Modeling a multifactorial disease in vitro - Moerkens - 2019 - United European Gastroenterology Journal - Wiley Online Library

Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease  and Beyond: Trends in Molecular Medicine
Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease and Beyond: Trends in Molecular Medicine

Celiac disease: should we care about microbes? | American Journal of  Physiology-Gastrointestinal and Liver Physiology
Celiac disease: should we care about microbes? | American Journal of Physiology-Gastrointestinal and Liver Physiology

Foods | Free Full-Text | Wheat Amylase Trypsin Inhibitors Aggravate  Intestinal Inflammation Associated with Celiac Disease Mediated by Gliadin  in BALB/c Mice
Foods | Free Full-Text | Wheat Amylase Trypsin Inhibitors Aggravate Intestinal Inflammation Associated with Celiac Disease Mediated by Gliadin in BALB/c Mice

Celiac disease: New therapies on the horizon - ScienceDirect
Celiac disease: New therapies on the horizon - ScienceDirect

Breakthrough mouse model of celiac disease could lead to new treatments -  UChicago Medicine
Breakthrough mouse model of celiac disease could lead to new treatments - UChicago Medicine

Figure 1 from Testing safety of germinated rye sourdough in a celiac  disease model based on the adoptive transfer of prolamin-primed memory T  cells into lymphopenic mice. | Semantic Scholar
Figure 1 from Testing safety of germinated rye sourdough in a celiac disease model based on the adoptive transfer of prolamin-primed memory T cells into lymphopenic mice. | Semantic Scholar

Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease  and Beyond - ScienceDirect
Therapeutic and Diagnostic Implications of T Cell Scarring in Celiac Disease and Beyond - ScienceDirect

Frontiers | Celiac Disease: A Review of Current Concepts in Pathogenesis,  Prevention, and Novel Therapies
Frontiers | Celiac Disease: A Review of Current Concepts in Pathogenesis, Prevention, and Novel Therapies

Co-factors, Microbes, and Immunogenetics in Celiac Disease to Guide Novel  Approaches for Diagnosis and Treatment
Co-factors, Microbes, and Immunogenetics in Celiac Disease to Guide Novel Approaches for Diagnosis and Treatment

IL-15, gluten and HLA-DQ8 drive tissue destruction in coeliac disease |  Nature
IL-15, gluten and HLA-DQ8 drive tissue destruction in coeliac disease | Nature

IJMS | Free Full-Text | Type 2 Transglutaminase in Coeliac Disease: A Key  Player in Pathogenesis, Diagnosis and Therapy
IJMS | Free Full-Text | Type 2 Transglutaminase in Coeliac Disease: A Key Player in Pathogenesis, Diagnosis and Therapy

Co-Silencing of Tissue Transglutaminase-2 and Interleukin-15 Genes in a Celiac  Disease Mimetic Mouse Model Using a Nanoparticle-in-Microsphere Oral System  | Molecular Pharmaceutics
Co-Silencing of Tissue Transglutaminase-2 and Interleukin-15 Genes in a Celiac Disease Mimetic Mouse Model Using a Nanoparticle-in-Microsphere Oral System | Molecular Pharmaceutics