Area of research
Molecular Biology · Developmental Neuroscience
Research interest
Research interests include Biology, Neuroscience, Stem cell, Parkinson's disease, Disease, and Dopamine.
A framework for neural organoids, assembloids and transplantation studies
Age-related pathological impairments in directly reprogrammed dopaminergic neurons derived from patients with idiopathic Parkinson’s disease
Robust derivation of transplantable dopamine neurons from human pluripotent stem cells by timed retinoic acid delivery
A cis-acting structural variation at the ZNF558 locus controls a gene regulatory network in human brain development
The future of stem cell therapies for Parkinson disease
Single cell transcriptomics identifies stem cell-derived graft composition in a model of Parkinson’s disease
Single-cell RNA sequencing reveals midbrain dopamine neuron diversity emerging during mouse brain development
TRIM28 Controls a Gene Regulatory Network Based on Endogenous Retroviruses in Human Neural Progenitor Cells
Direct Reprogramming of Resident NG2 Glia into Neurons with Properties of Fast-Spiking Parvalbumin-Containing Interneurons
REST suppression mediates neural conversion of adult human fibroblasts via microRNA‐dependent and ‐independent pathways
Predictive Markers Guide Differentiation to Improve Graft Outcome in Clinical Translation of hESC-Based Therapy for Parkinson’s Disease
Single-Cell Analysis Reveals a Close Relationship between Differentiating Dopamine and Subthalamic Nucleus Neuronal Lineages
<i>In Vivo</i>Reprogramming for Brain and Spinal Cord Repair