Area of research
Microbiology · Rehabilitation
Research interest
Research interests include Wound healing, Cell biology, Neutrophil extracellular traps, Programmed cell death, Gut flora, and Hydrolysate.
Sulforaphane promotes diabetic wound healing by regulating macrophage efferocytosis and polarization
RNA N6-methyladenosine demethylase FTO promotes diabetic wound healing through TRIB3-mediated autophagy in an m6A-YTHDF2-dependent manner
A strategy to boost xanthine oxidase and angiotensin converting enzyme inhibitory activities of peptides via molecular docking and module substitution
PYGL-mediated glucose metabolism reprogramming promotes EMT phenotype and metastasis of pancreatic cancer
Urolithin A Alleviates Colitis in Mice by Improving Gut Microbiota Dysbiosis, Modulating Microbial Tryptophan Metabolism, and Triggering AhR Activation
Neutrophils extracellular traps and ferroptosis in diabetic wounds
Food-derived bio-functional peptides for the management of hyperuricemia and associated mechanism
Mechanisms of resveratrol against diabetic wound by network pharmacology and experimental validation
Advanced progress of spatial metabolomics in head and neck cancer research
ACSL4 is essential for radiation-induced intestinal injury by initiating ferroptosis
Novel anti-hyperuricemic hexapeptides derived from<i>Apostichopus japonicus</i>hydrolysate and their modulation effects on the gut microbiota and host microRNA profile
Activated Platelets Autocrine 5-Hydroxytryptophan Aggravates Sepsis-Induced Acute Lung Injury by Promoting Neutrophils Extracellular Traps Formation
Interplay between Extracellular Matrix and Neutrophils in Diseases
Systematic investigation of the amino acid profiles that are correlated with xanthine oxidase inhibitory activity: Effects, mechanism and applications in protein source screening