Area of research
Molecular Biology · Infectious Diseases
Research interest
Research interests include Gut microbiota and health, Clostridium difficile and Clostridium perfringens research, Probiotics and Fermented Foods, and Diet and metabolism studies.
The Influence of Omega-3 Fatty Acids and Probiotics on Hippocampal Inflammation and Glial Cells in a Chronic Anorexia Nervosa Rat Model.
Host genetics shapes the recovery of the gut microbiome after antibiotic treatment: the role of the blood group related <i>B4galnt2</i> gene.
Exploring <i>Bacteroidota</i> strains from human stool and animal feces: phenotyping and functional diversity.
Gut Microbiome Structure and Progression in Multiple Sclerosis: A Meta-Analysis Across 14 COHORTS
Exploring new Bacteroidota strains: Functional Diversity and Probiotic Characteristics
Meeting Report on “10th Anniversary Symposium on Inflammatory Skin Disease”
Multi-omics analysis highlights the link of aging-related cognitive decline with systemic inflammation and alterations of tissue-maintenance
Functional host-specific adaptation of the intestinal microbiome in hominids
Longitudinal analysis of the gut microbiome in adolescent patients with anorexia nervosa: microbiome-related factors associated with clinical outcome.
Fecal microbiota transplantation of patients with anorexia nervosa did not alter flexible behavior in rats.
Advancing evolutionary medicine in Northern Germany: Collaboration between Kiel University's Medical Faculty and the Max Planck Institute for Evolutionary Biology.
Commensal bacteria weaken the intestinal barrier by suppressing epithelial neuropilin-1 and Hedgehog signaling
Intelectin-1 binds and alters the localization of the mucus barrier-modifying bacterium Akkermansia muciniphila.
Evolution of <i>E. coli</i> in a mouse model of inflammatory bowel disease leads to a disease-specific bacterial genotype and trade-offs with clinical relevance.
Pathometagenomics reveals susceptibility to intestinal infection by Morganella to be mediated by the blood group-related B4galnt2 gene in wild mice.
Evolution of<i>E. coli</i>in a mouse model of inflammatory bowel disease leads to a disease-specific bacterial genotype and trade-offs with clinical relevance
A <i>dietary carbohydrate – gut Parasutterella – human fatty acid biosynthesis</i> metabolic axis in obesity and type 2 diabetes
Intelectin-1 binds and alters the localization of the mucus barrier–modifying bacterium <i>Akkermansia muciniphila</i>
Key features of the genetic architecture and evolution of host-microbe interactions revealed by high-resolution genetic mapping of the mucosa-associated gut microbiome in hybrid mice.
Author response: Key features of the genetic architecture and evolution of host-microbe interactions revealed by high-resolution genetic mapping of the mucosa-associated gut microbiome in hybrid mice
The role of the blood group-related glycosyltransferases FUT2 and B4GALNT2 in susceptibility to infectious disease
Characterization of the skin microbiota in bullous pemphigoid patients and controls reveals novel microbial indicators of disease
Key features of the genetic architecture and evolution of host-microbe interactions revealed by high-resolution genetic mapping of the mucosa-associated gut microbiome in hybrid mice
An Integrated Metagenome Catalog Reveals New Insights into the Murine Gut Microbiome
S100A8 and S100A9 Are Important for Postnatal Development of Gut Microbiota and Immune System in Mice and Infants
Std fimbriae-fucose interaction increases Salmonella-induced intestinal inflammation and prolongs colonization
Gut microbiota shape ‘inflamm-ageing’ cytokines and account for age-dependent decline in DNA damage repair
Environmental Microbial Factors Determine the Pattern of Inflammatory Lesions in a Murine Model of Crohn’s Disease–Like Inflammation
Gut Dysbiosis With Bacilli Dominance and Accumulation of Fermentation Products Precedes Late-onset Sepsis in Preterm Infants
The evolution of ecological facilitation within mixed-species biofilms in the mouse gastrointestinal tract