Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Biology, Induced pluripotent stem cell, Neuroscience, Transcription factor, Cell biology, and Repressor.
Optimizing the in vitro neuronal microenvironment to mitigate phototoxicity in live-cell imaging
Increased Neuronal Nitric Oxide Synthase in Alzheimer's Disease Mediates Spontaneous Calcium Signaling and Divergent Glutamatergic Calcium Responses
Parsing the effect of co-culture with brain organoids on Diffuse Intrinsic Pontine Glioma (DIPG) using quantitative proteomics
REST and RCOR genes display distinct expression profiles in neurons and astrocytes using 2D and 3D human pluripotent stem cell models
Alzheimer’s disease induced neurons bearing PSEN1 mutations exhibit reduced excitability
Innovations advancing our understanding of microglia in Alzheimer's disease: From in vitro to in vivo models
Edaravone and mitochondrial transfer as potential therapeutics for vanishing white matter disease astrocyte dysfunction
ALS-linked CCNF variant disrupts motor neuron ubiquitin homeostasis
Transgene and Chemical Transdifferentiation of Somatic Cells for Rapid and Efficient Neurological Disease Cell Models
An Optimized Direct Lysis Gene Expression Microplate Assay and Applications for Disease, Differentiation, and Pharmacological Cell-Based Studies
Making neurons, made easy: The use of Neurogenin-2 in neuronal differentiation
More than a Corepressor: The Role of CoREST Proteins in Neurodevelopment
If Human Brain Organoids Are the Answer to Understanding Dementia, What Are the Questions?
Molecular and Functional Characterization of Neurogenin-2 Induced Human Sensory Neurons
Identification of repurposable cytoprotective drugs in vanishing white matter disease patient-derived cells
Particle-mediated delivery of frataxin plasmid to a human sensory neuronal model of Friedreich's ataxia