Area of research
Complementary and alternative medicine · Immunology and Allergy
Research interest
Research focused on Parkinson's disease and Self-healing hydrogels, with related work in GSK-3, Dentate gyrus, Sorting nexin. Notable publications include 'FTH1 Inhibits Ferroptosis Through Ferritinophagy in the 6-OHDA Model of Parkinson's Disease', 'Ultrafast in-situ forming halloysite nanotube-doped chitosan/oxidized dextran hydrogels for hemostasis and wound repair', and 'Parkinson’s Disease Dementia: Synergistic Effects of Alpha-Synuclein, Tau, Beta-Amyloid, and Iron'.
International Evidence‐Based Guidelines for Traditional Chinese Medicine Management of Allergic Rhinitis
The wnt/pyruvate kinase, muscle axis plays an essential role in the differentiation of mouse neuroblastoma cells
CDCA8 promotes the proliferation and migration of cervical cancer through regulating CDK1
P50 sensory gating as a neurophysiological correlate of symptomatic improvement by virtual reality-based computer avatar therapy system in patients with auditory verbal hallucinations: A pilot study
Effect of ST36 electroacupuncture on the switch of skeletal muscle fibres in mice with sciatic nerve dissociation
Ultrafast in-situ forming halloysite nanotube-doped chitosan/oxidized dextran hydrogels for hemostasis and wound repair
Parkinson’s Disease Dementia: Synergistic Effects of Alpha-Synuclein, Tau, Beta-Amyloid, and Iron
Super-enhancer-driven Sorting Nexin 5 expression promotes dopaminergic neuronal ferroptosis in Parkinson's disease models
Integrated Bioinformatics Analysis of Potential mRNA and miRNA Regulatory Networks in Mice With Ischemic Stroke Treated by Electroacupuncture
Atractylodes Lancea Volatile Oils Target ADAR2-miR-181a-5p Signaling to Mesenchymal Stem Cells Chondrogenic Differentiation
FTH1 Inhibits Ferroptosis Through Ferritinophagy in the 6-OHDA Model of Parkinson's Disease
Osteopontin exacerbates the progression of experimental autoimmune myasthenia gravis by affecting the differentiation of T cell subsets
Continuous GSK-3β overexpression in the hippocampal dentate gyrus induces prodepressant-like effects and increases sensitivity to chronic mild stress in mice