Area of research
Physiology · Cellular and Molecular Neuroscience
Research interest
Research focused on Neuroectoderm and Basal forebrain, with related work in Neuroscience, Exigua, Pyroptosis. Notable publications include 'The transcription factor Pou3f1 promotes neural fate commitment via activation of neural lineage genes and inhibition of external signaling pathways', 'ESC-Derived Basal Forebrain Cholinergic Neurons Ameliorate the Cognitive Symptoms Associated with Alzheimer’s Disease in Mouse Models', and 'Identification and Characterization of Candidate Chemosensory Gene Families from Spodoptera exigua Developmental Transcriptomes'.
HCN2 deficiency correlates with memory deficits and hyperexcitability of dCA1 pyramidal neurons in Alzheimer’s disease
adducin 1 is essential for the survival of erythroid precursors via regulating p53 transcription in zebrafish
<scp>NLRP3</scp> Attenuates Intraocular Inflammation by Inhibiting <scp>AIM2‐Mediated</scp> Pyroptosis Through the Phosphorylated <scp>Salt‐Inducible</scp> Kinase 1/Sterol Regulatory Element Binding Transcription Factor 1 Pathway
Mechanism of enrofloxacin-induced multidrug resistance in the pathogenic Vibrio harveyi from diseased abalones
The SrWRKY71 transcription factor negatively regulates SrUGT76G1 expression in Stevia rebaudiana
Discovery of tranylcypromine analogs with an acylhydrazone substituent as LSD1 inactivators: Design, synthesis and their biological evaluation
ESC-Derived Basal Forebrain Cholinergic Neurons Ameliorate the Cognitive Symptoms Associated with Alzheimer’s Disease in Mouse Models
Identification and Characterization of Candidate Chemosensory Gene Families from <i>Spodoptera exigua</i> Developmental Transcriptomes
The transcription factor Pou3f1 promotes neural fate commitment via activation of neural lineage genes and inhibition of external signaling pathways