Area of research
Molecular Biology · Food Science
Research interest
Research interests include Biology, Microbiology, Microbiome, Gut flora, Immune system, and Prevotella.
Streptococcus pyogenes EVs induce the alternative inflammasome via caspase-4/-5 in human monocytes
Establishment of a non-Westernized gut microbiota in men who have sex with men is associated with sexual practices
Extension of the Segatella copri complex to 13 species with distinct large extrachromosomal elements and associations with host conditions
Imbalanced gut microbiota fuels hepatocellular carcinoma development by shaping the hepatic inflammatory microenvironment
Klebsiella oxytoca causes colonization resistance against multidrug-resistant K. pneumoniae in the gut via cooperative carbohydrate competition
Gut microbiota depletion exacerbates cholestatic liver injury via loss of FXR signalling
IL-17 controls central nervous system autoimmunity through the intestinal microbiome
Modulation of inflammatory responses by gastrointestinal Prevotella spp. – From associations to functional studies
A versatile genetic toolbox for Prevotella copri enables studying polysaccharide utilization systems
Control of membrane barrier during bacterial type-III protein secretion
Perturbation of the gut microbiome by Prevotella spp. enhances host susceptibility to mucosal inflammation
Distinct Polysaccharide Utilization Determines Interspecies Competition between Intestinal Prevotella spp.
An Integrated Metagenome Catalog Reveals New Insights into the Murine Gut Microbiome
Variations in microbiota composition of laboratory mice influence Citrobacter rodentium infection via variable short-chain fatty acid production
Intestinal Dysbiosis Amplifies Acetaminophen-Induced Acute Liver Injury
Bridge helix arginines play a critical role in Cas9 sensitivity to mismatches
c-Maf-dependent Treg cell control of intestinal TH17 cells and IgA establishes host–microbiota homeostasis
Distinct Microbial Communities Trigger Colitis Development upon Intestinal Barrier Damage via Innate or Adaptive Immune Cells
Enhancement of IFNγ Production by Distinct Commensals Ameliorates Salmonella-Induced Disease
Shaping of Intestinal Microbiota in Nlrp6- and Rag2-Deficient Mice Depends on Community Structure
Microbiota Normalization Reveals that Canonical Caspase-1 Activation Exacerbates Chemically Induced Intestinal Inflammation