Area of research
Molecular Biology · Neurology
Research interest
Research interests include Nicotinic Acetylcholine Receptors Study, Vagus Nerve Stimulation Research, Neuroscience and Neuropharmacology Research, and Ion channel regulation and function.
Neural mechanism of trigeminal nerve stimulation recovering defensive arousal responses in traumatic brain injury
Trigeminal nerve stimulation restores hippocampal dopamine deficiency to promote cognitive recovery in traumatic brain injury
Potentiation of PIEZO2 mechanically-activated currents in sensory neurons mediates vincristine-induced mechanical hypersensitivity
The gut-to-brain axis for toxin-induced defensive responses
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
Influence of human amylin on the membrane stability of rat primary hippocampal neurons
Mechanosensitive ion channel Piezo1 promotes prostate cancer development through the activation of the Akt/mTOR pathway and acceleration of cell cycle
Transient Receptor Potential Cation Channel Subfamily Vanilloid 4 and 3 in the Inner Ear Protect Hearing in Mice
Revealing the Inhibitory Effect of Ginseng on Mitochondrial Respiration through Synaptosomal Proteomics
Inhibition of transmembrane member 16A calcium‐activated chloride channels by natural flavonoids contributes to flavonoid anticancer effects
Multiple target of hAmylin on rat primary hippocampal neurons