Area of research
Molecular Biology · Immunology
Research interest
Research interests include Immune Response and Inflammation, Gut microbiota and health, Cell death mechanisms and regulation, and Inflammasome and immune disorders.
Imidazole propionate is a driver and therapeutic target in atherosclerosis
Gut microbiota promotes immune tolerance at the maternal-fetal interface
CD4 T cell therapy counteracts inflammaging and senescence by preserving gut barrier integrity.
Gut bacteria–derived serotonin promotes immune tolerance in early life
Microbiota-dependent activation of CD4<sup>+</sup> T cells induces CTLA-4 blockade-associated colitis via Fcγ receptors.
Gut bacteria-derived serotonin promotes immune tolerance in early life.
Maternal gut microbiome–induced IgG regulates neonatal gut microbiome and immunity
Gut microbiota-derived metabolites confer protection against SARS-CoV-2 infection
Maternal gut microbiome-induced IgG regulates neonatal gut microbiome and immunity.
Relationship between the gut microbiota and bile acid composition in the ileal mucosa of Crohn’s disease
Lipopolysaccharide O structure of adherent and invasive Escherichia coli regulates intestinal inflammation via complement C3.
Interleukin-11 is a Marker for Both Cancer- and Inflammation-Associated Fibroblasts that Contribute to Colorectal Cancer Progression
Dietary l-serine confers a competitive fitness advantage to Enterobacteriaceae in the inflamed gut
A specific gene-microbe interaction drives the development of Crohn's disease-like colitis in mice.
Neonatal acquisition of <i>Clostridia</i> species protects against colonization by bacterial pathogens
Mechanisms of inflammation-driven bacterial dysbiosis in the gut
Gut Microbiota-Induced Immunoglobulin G Controls Systemic Infection by Symbiotic Bacteria and Pathogens
NOD1 and NOD2: Signaling, Host Defense, and Inflammatory Disease
Infection Mobilizes Hematopoietic Stem Cells through Cooperative NOD-like Receptor and Toll-like Receptor Signaling
Control of pathogens and pathobionts by the gut microbiota