Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Memory and Neural Mechanisms, Neurotransmitter Receptor Influence on Behavior, and Receptor Mechanisms and Signaling.
The psychoplastogen tabernanthalog induces neuroplasticity without proximate immediate early gene activation.
Effects of Neuromodulatory Stimulation on Endogenous Psychedelics
d-Serine Inhibits Non-ionotropic NMDA Receptor Signaling
d-Serine Inhibits Non-ionotropic NMDA Receptor Signaling.
D-Serine inhibits non-ionotropic NMDA receptor signaling
Psychedelics promote neuroplasticity through the activation of intracellular 5-HT2A receptors.
5-HT2ARs Mediate Therapeutic Behavioral Effects of Psychedelic Tryptamines.
GluN3A subunit tunes NMDA receptor synaptic trafficking and content during postnatal brain development.
D-serine availability modulates prefrontal cortex inhibitory interneuron development and circuit maturation.
SOX2 is essential for astrocyte maturation and its deletion leads to hyperactive behavior in mice.
Reduced d-serine levels drive enhanced non-ionotropic NMDA receptor signaling and destabilization of dendritic spines in a mouse model for studying schizophrenia.
Excessive Laughter-like Vocalizations, Microcephaly, and Translational Outcomes in the <i>Ube3a</i> Deletion Rat Model of Angelman Syndrome.
Increased excitation-inhibition balance and loss of GABAergic synapses in the serine racemase knockout model of NMDA receptor hypofunction.
Postsynaptic Serine Racemase Regulates NMDA Receptor Function.
The Role of Glutamate in Language and Language Disorders - Evidence from ERP and Pharmacologic Studies.
Increased excitation-inhibition balance due to a loss of GABAergic synapses in the serine racemase knockout model of NMDA receptor hypofunction
Postsynaptic serine racemase regulates NMDA receptor function
NMDAR-Activated PP1 Dephosphorylates GluN2B to Modulate NMDAR Synaptic Content.
Metaplasticity contributes to memory formation in the hippocampus.
Sestd1 Encodes a Developmentally Dynamic Synapse Protein That Complexes With BCR Rac1-GAP to Regulate Forebrain Dendrite, Spine and Synapse Formation.
Excitotoxic superoxide production and neuronal death require both ionotropic and non-ionotropic NMDA receptor signaling
Activated CaMKII Couples GluN2B and Casein Kinase 2 to Control Synaptic NMDA Receptors
SAP102 Mediates Synaptic Clearance of NMDA Receptors