Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Neurotransmitter Receptor Influence on Behavior, Neuroscience and Neuropharmacology Research, Receptor Mechanisms and Signaling, and Memory and Neural Mechanisms.
Dopamine D1–D2 signalling in hippocampus arbitrates approach and avoidance
Cocaine-context memories are transcriptionally encoded in nucleus accumbens Arc ensembles
Sex-Specific Regulation of Stress Susceptibility by the Astrocytic Gene <i>Htra1</i>
Transcriptional control of nucleus accumbens neuronal excitability by retinoid X receptor alpha tunes sensitivity to drug rewards
Dopaminoceptive D1 and D2 neurons in ventral hippocampus arbitrate approach and avoidance in anxiety
Transcriptional correlates of cocaine-associated learning in striatal ARC ensembles
The long noncoding RNA FEDORA is a cell type– and sex-specific regulator of depression
Transcriptional control of nucleus accumbens neuronal excitability by Retinoid X Receptor Alpha tunes sensitivity to drug rewards
Drug-activated cells: From immediate early genes to neuronal ensembles in addiction
Gene-Targeted, CREB-Mediated Induction of ΔFosB Controls Distinct Downstream Transcriptional Patterns Within D1 and D2 Medium Spiny Neurons
Sex-Specific Role for SLIT1 in Regulating Stress Susceptibility
The Long Noncoding RNA FEDORA is a Cell-Type- and Sex-Specific Regulator of Depression
Epigenetic Mechanisms of Opioid Addiction
Stress resilience is promoted by a Zfp189-driven transcriptional network in prefrontal cortex
From Signaling Molecules to Circuits and Behaviors: Cell-Type–Specific Adaptations to Psychostimulant Exposure in the Striatum
Synaptic Microtubule-Associated Protein EB3 and SRC Phosphorylation Mediate Structural and Behavioral Adaptations During Withdrawal From Cocaine Self-Administration
Estrogen receptor α drives pro-resilient transcription in mouse models of depression
Transcriptional and physiological adaptations in nucleus accumbens somatostatin interneurons that regulate behavioral responses to cocaine
<i>Zfp189</i> Mediates Stress Resilience Through a CREB-Regulated Transcriptional Network in Prefrontal Cortex
Granulocyte-colony stimulating factor controls neural and behavioral plasticity in response to cocaine