Area of research
Public Health, Environmental and Occupational Health · Biochemistry
Research interest
Research interests include Sulfur Compounds in Biology, Nutritional Studies and Diet, Obesity, Physical Activity, Diet, and Nitric Oxide and Endothelin Effects.
Trimethylamine N-oxide induces cardiac diastolic dysfunction by down-regulating Piezo1 in mice with heart failure with preserved ejection fraction
Hydrogen sulfide preserves the function of senescent endothelium through SIRT2 mediated inflammatory inhibition
Hydrogen sulfide attenuates sepsis-induced cardiac dysfunction in infant rats by inhibiting the expression of cold-inducible RNA-binding protein
The relationship between dietary inflammation potential, dietary oxidative balance score, and female reproductive function: a mediation analysis of obesity indicators
Data-Independent Acquisition Proteomics Identifies Plasma Prostaglandin-H2 D-Isomerase as an Early Diagnostic Biomarker for STEMI and NSTEMI
Association between dietary animal-derived branched-chain amino acids and sarcopenia in older adults: a cross-sectional study based on Chinese community
Hydrogen sulfide improves vascular endothelial function in hypertensive states through SIRT6 anti-inflammatory signaling
Applicability of different resting energy expenditure prediction equations to overweight and obese women of childbearing age with fertility problems.
Trimethylamine-N-oxide aggravated the sympathetic excitation in D-galactose induced aging rats by down-regulating P2Y12 receptor in microglia
Butyrate attenuates sympathetic activation in rats with chronic heart failure by inhibiting microglial inflammation in the paraventricular nucleus
H2S alleviated sepsis-induced acute kidney injury by inhibiting PERK/Bax-Bcl2 pathway
Tyrosine hydroxylase-positive neurons in the rostral ventrolateral medulla mediate sympathetic activation in sepsis
Decreased levels of hydrogen sulfide in the hypothalamic paraventricular nucleus contribute to sympathetic hyperactivity induced by cerebral infarction
Hydrogen sulfide ameliorated endothelial dysfunction in hyperhomocysteinemia rats: Mechanism of IRE1α/JNK pathway-mediated autophagy
Hydrogen Sulfide Ameliorates Heart Aging by Downregulating Matrix Metalloproteinase-9
Hydrogen Sulfide Improves Cardiac Aging by Upregulating Cartilage Oligomeric Matrix Proteins
Hydrogen Sulfide Ameliorated Endothelial Dysfunction In Hyperhomocysteinemia Rats: Mechanism of Endoplasmic Reticulum Stress-Mediated Autophagy
Alginate-based edible coating with oregano essential oil/β-cyclodextrin inclusion complex for chicken breast preservation
Association between sarcopenia and cognitive function in older Chinese adults: Evidence from the China health and retirement longitudinal study
Hydrogen sulfide ameliorates endothelial dysfunction in aging arteries by regulating ferroptosis
Monounsaturated and polyunsaturated fatty acids concerning prediabetes and type 2 diabetes mellitus risk among participants in the National Health and Nutrition Examination Surveys (NHANES) from 2005 to March 2020
Soluble epoxide hydrolase and TRPC3 channels jointly contribute to homocysteine-induced cardiac hypertrophy: Interrelation and regulation by C/EBPβ
Hydrogen sulfide ameliorates senescence in vascular endothelial cells through ameliorating inflammation and activating PPARδ/SGLT2/STAT3 signaling pathway
Association between daily screen time and risk of stroke among middle-aged and elderly people: research based on China health and nutrition survey
Correlation of dietary mineral intake and malnutrition in cancer patients: A multicenter cross-sectional study
Validation of a novel nutrition risk screening tool in stroke patients.
The association between maternal healthy lifestyle factors during pregnancy and the neonatal anthropometric indicators based on a prospective cohort study.
Hydrogen Sulfide Inhibits Ferroptosis in Cardiomyocytes to Protect Cardiac Function in Aging Rats
Hydrogen Sulfide Ameliorated High Choline‐Induced Cardiac Dysfunction by Inhibiting cGAS‐STING‐NLRP3 Inflammasome Pathway
Targeting IRE1α-JNK-c-Jun/AP-1-sEH Signaling Pathway Improves Myocardial and Coronary Endothelial Function Following Global Myocardial Ischemia/Reperfusion