Area of research
Molecular Biology · Genetics
Research interest
Research interests include Gut microbiota and health, Inflammatory Bowel Disease, Immune Cell Function and Interaction, and Microscopic Colitis.
Efficient Expression and Purification of Recombinant Mouse Dimeric IgA
Questioning the fetal microbiome illustrates pitfalls of low-biomass microbial studies
Intestinal B cells license metabolic T-cell activation in NASH microbiota/antigen-independently and contribute to fibrosis by IgA-FcR signalling
Endoplasmic reticulum stress in the intestinal epithelium initiates purine metabolite synthesis and promotes Th17 cell differentiation in the gut
Vasoactive Intestinal Polypeptide Plays a Key Role in the Microbial-Neuroimmune Control of Intestinal Motility
Microbiota-derived acetate enables the metabolic fitness of the brain innate immune system during health and disease
Parallelism of intestinal secretory IgA shapes functional microbial fitness
Neuronal programming by microbiota regulates intestinal physiology
Microbiota-Induced Type I Interferons Instruct a Poised Basal State of Dendritic Cells
Mucosal or systemic microbiota exposures shape the B cell repertoire
Somatic mosaicism and common genetic variation contribute to the risk of very-early-onset inflammatory bowel disease
Microbial network disturbances in relapsing refractory Crohn’s disease
Epithelial endoplasmic reticulum stress orchestrates a protective IgA response
Involvement of B cells in Non-Alcoholic Steatohepatitis (NASH)
Gut microbiota regulates maturation of the adult enteric nervous system via enteric serotonin networks
Functional Gut Microbiota Remodeling Contributes to the Caloric Restriction-Induced Metabolic Improvements
Environmental triggers in IBD: a review of progress and evidence
How nutrition and the maternal microbiota shape the neonatal immune system
The maternal microbiota drives early postnatal innate immune development
Symptoms of Depression and Anxiety Are Independently Associated With Clinical Recurrence of Inflammatory Bowel Disease
The Liver at the Nexus of Host-Microbial Interactions
The outer mucus layer hosts a distinct intestinal microbial niche
The Intestinal Microbiota Contributes to the Ability of Helminths to Modulate Allergic Inflammation
The Liver May Act as a Firewall Mediating Mutualism Between the Host and Its Gut Commensal Microbiota
Segmented Filamentous Bacterium Uses Secondary and Tertiary Lymphoid Tissues to Induce Gut IgA and Specific T Helper 17 Cell Responses
Sex Differences in the Gut Microbiome Drive Hormone-Dependent Regulation of Autoimmunity
Interactions Between the Microbiota and the Immune System
Age, microbiota, and T cells shape diverse individual IgA repertoires in the intestine