Area of research
Health · Cellular and Molecular Neuroscience
Research interest
Research interests include Medicine, Pharmacology, Neuroscience, AMPA receptor, Cannabidiol, and Excitatory postsynaptic potential.
Tecotabart vedotin in Claudin 18.2-positive advanced gastric/gastroesophageal junction cancer: A Bayesian phase 1/2 clinical trial
BBB proteomic analysis reveals that complex febrile seizures in infancy enhance susceptibility to epilepsy in adulthood through dysregulation of ECM-receptor interaction signaling pathway
Corrigendum to “Mechanism of Gastrodin against neurotoxicity based on network pharmacology, molecular docking and experimental verification” [Biomed. Pharmacother. 180 (2024) 117611]
Traditional Chinese medicine on epilepsy: focus on N-methyl-D-aspartate receptors and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors
Mechanism of Gastrodin against neurotoxicity based on network pharmacology, molecular docking and experimental verification
Application of TCM network pharmacology and experimental verification to explore the mechanism of kaempferol against epilepsy
Exploring the therapeutic potential of cannabidiol for sleep deprivation-induced hyperalgesia
Chelerythrine inhibits NR2B NMDA receptor independent of PKC activity
Essential oils: Chemical constituents, potential neuropharmacological effects and aromatherapy - A review
Deficiency of transmembrane AMPA receptor regulatory protein γ-8 leads to attention-deficit hyperactivity disorder-like behavior in mice
Jujuboside B inhibits febrile seizure by modulating AMPA receptor activity
Elucidating a Complicated Enantioselective Metabolic Profile: A Study From Rats to Humans Using Optically Pure Doxazosin
Movement disorder caused by FRRS1L deficiency may be associated with morphological and functional disorders in Purkinje cells
Corrigendum to “Cannabidiol inhibits febrile seizure by modulating AMPA receptor kinetics through its interaction with the N-terminal domain of GluA1/GluA2” [Pharmacol. Res. 161 (2020) 105128 1-14]
Cannabidiol inhibits febrile seizure by modulating AMPA receptor kinetics through its interaction with the N-terminal domain of GluA1/GluA2
Piezo2 channel in nodose ganglia neurons is essential in controlling hypertension in a pathway regulated directly by Nedd4-2
Association between environmental tobacco smoke exposure and dementia syndromes