Area of research
Molecular Biology · Genetics
Research interest
Research interests include Epigenetics and DNA Methylation, Genetic Associations and Epidemiology, CRISPR and Genetic Engineering, and Neuroinflammation and Neurodegeneration Mechanisms.
Multiomic single-cell profiling identifies critical regulators of postnatal brain
Heterogeneous epigenetic variation converges on splicing dysregulation in opioid addiction
Single nucleus transcriptomics of ventral midbrain identifies glial activation associated with chronic opioid use disorder
Single Nucleus Transcriptomics Reveals Pervasive Glial Activation in Opioid Overdose Cases
Population-level variation in enhancer expression identifies disease mechanisms in the human brain
HIV integration in the human brain is linked to microglial activation and 3D genome remodeling
Chromatin architecture in addiction circuitry identifies risk genes and potential biological mechanisms underlying cigarette smoking and alcohol use traits
Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
HIV integration in the human brain is linked to microglial activation and 3D genome remodeling
Correction: Chromatin architecture in addiction circuitry identifies risk genes and potential biological mechanisms underlying cigarette smoking and alcohol use traits
Common Genetic Variation in Humans Impacts In Vitro Susceptibility to SARS-CoV-2 Infection
Induction of dopaminergic neurons for neuronal subtype-specific modeling of psychiatric disease risk
Induction of Dopaminergic Neurons for Neuronal Subtype-Specific Modeling of Psychiatric Disease Risk
Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid dependence
Chromatin architecture in addiction circuitry elucidates biological mechanisms underlying cigarette smoking and alcohol use traits
A chromosomal connectome for psychiatric and metabolic risk variants in adult dopaminergic neurons
Common genetic variation in humans impacts <i>in vitro</i> susceptibility to SARS-CoV-2 infection