Area of research
Genetics · Physiology
Research interest
Research interests include Glioma Diagnosis and Treatment, Adipose Tissue and Metabolism, CAR-T cell therapy research, and Diet and metabolism studies.
GABAergic neuron-to-glioma synapses in diffuse midline gliomas
Cholinergic neuronal activity promotes diffuse midline glioma growth through muscarinic signaling
CNSC-06. Brainstem neuromodulatory neurons promote glioma growth locally and via long-range projections to midline and cortical structures
CNSC-81. H3G34-MUTANT DIFFUSE HEMISPHERIC GLIOMAS CONTAIN CELLULAR NICHES OF GABAERGIC INTERNEURON-LIKE CELLS WITH DUAL FREQUENCY AUTONOMOUS RHYTHMIC CALCIUM ACTIVITY
Myelin plasticity in the ventral tegmental area is required for opioid reward
CHD2 Regulates Neuron–Glioma Interactions in Pediatric Glioma
Cholinergic Neuronal Activity Promotes Diffuse Midline Glioma Growth through Muscarinic Signaling
CNSC-28. BRAINSTEM NEUROMODULATORY NEURONS PROMOTE GLIOMA GROWTH LOCALLY AND VIA LONG-RANGE PROJECTIONS TO MIDLINE AND CORTICAL STRUCTURES
Glioma synapses recruit mechanisms of adaptive plasticity
Remote neuronal activity drives glioma progression through SEMA4F
Neuron–oligodendroglial interactions in health and malignant disease
Single substitution in H3.3G34 alters DNMT3A recruitment to cause progressive neurodegeneration
CNSC-01. GABAERGIC NEURON-TO-GLIOMA SYNAPSES IN DIFFUSE MIDLINE GLIOMAS
Mild respiratory COVID can cause multi-lineage neural cell and myelin dysregulation
Invasive glioma cells: The malignant pioneers that follow the current
Electrical and synaptic integration of glioma into neural circuits
Integrated Molecular Meta-Analysis of 1,000 Pediatric High-Grade and Diffuse Intrinsic Pontine Glioma
Transcriptional Dependencies in Diffuse Intrinsic Pontine Glioma
Genomic analysis of diffuse intrinsic pontine gliomas identifies three molecular subgroups and recurrent activating ACVR1 mutations
Recurrent activating ACVR1 mutations in diffuse intrinsic pontine glioma