Area of research
Molecular Biology · Genetics
Research interest
Research interests include Gut microbiota and health, Clostridium difficile and Clostridium perfringens research, Inflammatory Bowel Disease, and Helicobacter pylori-related gastroenterology studies.
To stain or not to stain: unraveling potential bacterial contamination in germ-free husbandry using bacterial viability staining.
Age-related impairment of intestinal inflammation resolution through an eicosanoid-immune-microbiota axis
Function-based selection of synthetic communities enables mechanistic microbiome studies
RNase T2 restricts TLR13-mediated autoinflammation in vivo.
Gut microbiota deficiency reduces neutrophil activation and is protective after ischemic stroke
A specific microbial consortium enhances Th1 immunity, improves LCMV viral clearance but aggravates LCMV disease pathology in mice.
Biological adaptation to a germ-free environment should not be mistaken as a burden for animals.
Gut microbiota depletion delays somatic peripheral nerve development and impairs neuromuscular junction maturation
Gut microbiota prevents small intestinal tumor formation due to bile acids in gnotobiotic mice
Gut microbiota promote liver regeneration through hepatic membrane phospholipid biosynthesis
Gut microbiota promote liver regeneration through hepatic membrane phospholipid biosynthesis
The Genetic Background Is Shaping Cecal Enlargement in the Absence of Intestinal Microbiota.
Enhanced cultured diversity of the mouse gut microbiota enables custom-made synthetic communities
Approaches to discern if microbiome associations reflect causation in metabolic and immune disorders
HDHL-INTIMIC: A European Knowledge Platform on Food, Diet, Intestinal Microbiomics, and Human Health.
E. coli enhance colonization resistance against Salmonella Typhimurium by competing for galactitol, a context-dependent limiting carbon source
Microbial regulation of hexokinase 2 links mitochondrial metabolism and cell death in colitis
XIAP restrains TNF-driven intestinal inflammation and dysbiosis by promoting innate immune responses of Paneth and dendritic cells
XIAP restrains TNF-driven intestinal inflammation and dysbiosis by promoting innate immune responses of Paneth and dendritic cells.
Deficiency in X-linked inhibitor of apoptosis protein promotes susceptibility to microbial triggers of intestinal inflammation.
Synthetic Microbiomes on the Rise-Application in Deciphering the Role of Microbes in Host Health and Disease.
Monitoring and contamination incidence of gnotobiotic experiments performed in microisolator cages.
Targeting zonulin and intestinal epithelial barrier function to prevent onset of arthritis
The gut bacterium <i>Extibacter muris</i> produces secondary bile acids and influences liver physiology in gnotobiotic mice
Bile acids drive the newborn’s gut microbiota maturation
S100A8 and S100A9 Are Important for Postnatal Development of Gut Microbiota and Immune System in Mice and Infants
Reproducible Colonization of Germ-Free Mice With the Oligo-Mouse-Microbiota in Different Animal Facilities
Dietary cellulose induces anti-inflammatory immunity and transcriptional programs via maturation of the intestinal microbiota
Disturbed gut microbiota and bile homeostasis in <i>Giardia</i> -infected mice contributes to metabolic dysregulation and growth impairment
Disturbed gut microbiota and bile homeostasis in <i>Giardia</i>-infected mice contributes to metabolic dysregulation and growth impairment.