Area of research
Biological Psychiatry · Behavioral Neuroscience
Research interest
Research interests include Neuroscience, Hippocampus, Prefrontal cortex, Hippocampal formation, Oxidative stress, and Neurogenesis.
Iron overload disrupts lipid desaturation through SKN-1 signaling in C. elegans: implications for ferroptosis-based immunomodulatory biomaterials
Polygonatum sibiricum polysaccharide delays age-related decline and preserves muscle integrity in Caenorhabditis elegans by modulating the daf-2/IIS pathway
Gut Microbiota and Immunoglobulin A Nephropathy: Exploration of Dietary Intervention and Treatment Strategies
High Iron Diet Reduces the Lifespan and Promotes Oxidative Stress Through Skn-1 Pathway Depending on the Change of Fatty Acid Desaturase in C. Elegans
Nrf2 regulates iron-dependent hippocampal synapses and functional connectivity damage in depression
Corrigendum: Xiaoyaosan exerts antidepressant effect by downregulating RAGE expression in cingulate gyrus of depressive-like mice
Blockade of Indoleamine 2, 3-dioxygenase 1 ameliorates hippocampal neurogenesis and BOLD-fMRI signals in chronic stress precipitated depression
RETRACTED; Combined rs‐fMRI study on brain functional imaging and mechanism of RAGE‐DAMPs of depression: Evidence from MDD patients to chronic stress‐induced depression models in cynomolgus monkeys and mice
Xiaoyaosan Exerts Antidepressant Effect by Downregulating RAGE Expression in Cingulate Gyrus of Depressive-Like Mice
Early-Life Stress Induces Depression-Like Behavior and Synaptic-Plasticity Changes in a Maternal Separation Rat Model: Gender Difference and Metabolomics Study
SiNiSan ameliorates depression-like behavior in rats by enhancing synaptic plasticity via the CaSR-PKC-ERK signaling pathway
Physical exercise rectifies CUMS-induced aberrant regional homogeneity in mice accompanied by the adjustment of skeletal muscle PGC-1a/IDO1 signals and hippocampal function
Corrigendum to “SiNiSan ameliorates depression-like behavior in rats by enhancing synaptic plasticity via the CaSR-PKC-ERK signaling pathway” [Biomed. Pharmacother. 124 (2020) 109787]
Modified Xiaoyaosan reverses aberrant brain regional homogeneity to exert antidepressive effects in mice
Corrigendum to “Neural circuitry among connecting the hippocampus, prefrontal cortex and basolateral amygdala in a mouse depression model: Associations correlations between BDNF levels and BOLD - fMRI signals” [Brain Res. Bull. 142(2018) 107-115]
Polydatin alleviated alcoholic liver injury in zebrafish larvae through ameliorating lipid metabolism and oxidative stress
Neural circuitry among connecting the hippocampus, prefrontal cortex and basolateral amygdala in a mouse depression model: Associations correlations between BDNF levels and BOLD – fMRI signals
Modified Xiaoyaosan (MXYS) Exerts Anti-depressive Effects by Rectifying the Brain Blood Oxygen Level-Dependent fMRI Signals and Improving Hippocampal Neurogenesis in Mice
Corrigendum: Modified Xiaoyaosan (MXYS) Exerts Anti-depressive Effects by Rectifying the Brain Blood Oxygen Level-Dependent FMRI Signals and Improving Hippocampal Neurogenesis in Mice
Voluntary wheel running ameliorates depression-like behaviors and brain blood oxygen level-dependent signals in chronic unpredictable mild stress mice