Area of research
Pharmacology · Physiology
Research interest
Research interests include Neuroprotection, Chemistry, Acetylcholinesterase, Tacrine, Pharmacology, and MPTP.
Cinnamic Acid Derivatives: Recent Discoveries and Development Strategies for Alzheimer’s Disease
Promising tacrine/huperzine A‐based dimeric acetylcholinesterase inhibitors for neurodegenerative disorders: From relieving symptoms to modifying diseases through multitarget
Tacrine Induces Endoplasmic Reticulum–Stressed Apoptosis via Disrupting the Proper Assembly of Oligomeric Acetylcholinesterase in Cultured Neuronal Cells
Interacting with 7 nAChR is a new mechanism for AChE to enhance the inflammatory response in macrophages
Shexiang Baoxin Pill, a Traditional Chinese Herbal Formula, Rescues the Cognitive Impairments in APP/PS1 Transgenic Mice
Substantial protection against MPTP-associated Parkinson's neurotoxicity in vitro and in vivo by anti-cancer agent SU4312 via activation of MEF2D and inhibition of MAO-B
Sunitinib, a Clinically Used Anticancer Drug, Is a Potent AChE Inhibitor and Attenuates Cognitive Impairments in Mice
Indirubin-3-Oxime Prevents H2O2-Induced Neuronal Apoptosis via Concurrently Inhibiting GSK3β and the ERK Pathway
Protection against β-amyloid-induced synaptic and memory impairments via altering β-amyloid assembly by bis(heptyl)-cognitin
Effect of Tacrine‐3‐caffeic Acid, A Novel Multifunctional Anti‐Alzheimer's Dimer, Against Oxidative‐Stress‐Induced Cell Death in <scp>HT</scp>22 Hippocampal Neurons: Involvement of Nrf2/<scp>HO</scp>‐1 Pathway
The anti‐cancer agent <scp>SU4312 u</scp>nexpectedly protects against <scp>MPP<sup>+</sup></scp>‐induced neurotoxicity via selective and direct inhibition of neuronal <scp>NOS</scp>