Area of research
Molecular Biology · Genetics
Research interest
Research interests include Gut microbiota and health, Genetic Associations and Epidemiology, Nutritional Studies and Diet, and Metabolomics and Mass Spectrometry Studies.
Longitudinal serum proteome mapping reveals biomarkers for healthy ageing and related cardiometabolic diseases
Therapeutic targets for inflammatory bowel disease: proteome-wide Mendelian randomization and colocalization analyses
Plasma proteins and onset of type 2 diabetes and diabetic complications: Proteome-wide Mendelian randomization and colocalization analyses
Comparison of fecal and blood metabolome reveals inconsistent associations of the gut microbiota with cardiometabolic diseases
Mendelian randomization and clinical trial evidence supports TYK2 inhibition as a therapeutic target for autoimmune diseases
Genome-wide genotype-serum proteome mapping provides insights into the cross-ancestry differences in cardiometabolic disease susceptibility
Population serum proteomics uncovers a prognostic protein classifier for metabolic syndrome
Proteomic insights into modifiable risk of venous thromboembolism and cardiovascular comorbidities
Proteomic insights into the associations between obesity, lifestyle factors, and coronary artery disease
The gut microbiota-bile acid axis links the positive association between chronic insomnia and cardiometabolic diseases
Human Gut Antibiotic Resistome and Progression of Diabetes
Associations of dietary diversity with the gut microbiome, fecal metabolites, and host metabolism: results from 2 prospective Chinese cohorts
Health effects of milk consumption: phenome-wide Mendelian randomization study
Gut microbiota, inflammation, and molecular signatures of host response to infection
Circulating vitamin C concentration and risk of cancers: a Mendelian randomization study
Multi-omics analyses reveal relationships among dairy consumption, gut microbiota and cardiometabolic health
Interpretable Machine Learning Framework Reveals Robust Gut Microbiome Features Associated With Type 2 Diabetes
The interplay between host genetics and the gut microbiome reveals common and distinct microbiome features for complex human diseases
Dietary fruit and vegetable intake, gut microbiota, and type 2 diabetes: results from two large human cohort studies