Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Pluripotent Stem Cells Research, CRISPR and Genetic Engineering, Muscle Physiology and Disorders, and Neuroscience and Neural Engineering.
Multi-omic analysis of selectively vulnerable motor neuron subtypes implicates altered lipid metabolism in ALS
Transneuronal Propagation of Pathologic α-Synuclein from the Gut to the Brain Models Parkinson’s Disease
GBA1 deficiency negatively affects physiological α-synuclein tetramers and related multimers
Optimal electrical stimulation boosts stem cell therapy in nerve regeneration
Zika virus directly infects peripheral neurons and induces cell death
Concordant but Varied Phenotypes among Duchenne Muscular Dystrophy Patient-Specific Myoblasts Derived using a Human iPSC-Based Model
Functional Coupling with Cardiac Muscle Promotes Maturation of hPSC-Derived Sympathetic Neurons
Capturing the biology of disease severity in a PSC-based model of familial dysautonomia
A comparison of genetically matched cell lines reveals the equivalence of human iPSCs and ESCs
A Dynamic Unfolded Protein Response Contributes to the Control of Cortical Neurogenesis
Generation of Multipotent Induced Neural Crest by Direct Reprogramming of Human Postnatal Fibroblasts with a Single Transcription Factor
Modeling Neural Crest Induction, Melanocyte Specification, and Disease-Related Pigmentation Defects in hESCs and Patient-Specific iPSCs
Combined small-molecule inhibition accelerates developmental timing and converts human pluripotent stem cells into nociceptors
Large-scale screening using familial dysautonomia induced pluripotent stem cells identifies compounds that rescue IKBKAP expression