Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Nerve injury and regeneration, Neurogenesis and neuroplasticity mechanisms, Retinal Development and Disorders, and Mitochondrial Function and Pathology.
Repressed mTORC1 signaling and transient dendritic pruning support axonal regeneration
Fibrotic scarring prevents optic nerve regeneration despite preserved axonal growth potential in adult killifish
Differential retinal ganglion cell resilience to optic nerve injury across vertebrate species
Successful axonal regeneration is driven by evolutionarily conserved metabolic reprogramming
Successful axonal regeneration is associated with intraneuronal metabolic reprogramming
Differential retinal ganglion cell resilience to optic nerve injury across vertebrate species
Local glycolysis supports injury-induced axonal regeneration
Age‐related dysregulation of the retinal transcriptome in African turquoise killifish
Local glycolysis supports injury-induced axonal regeneration
Optimization of Whole Mount RNA Multiplexed in situ Hybridization Chain Reaction With Immunohistochemistry, Clearing and Imaging to Visualize Octopus Embryonic Neurogenesis
Tissue stretching is a confounding factor for the evaluation of neurodegeneration in the ever-growing killifish
A novel retinal ganglion cell quantification tool based on deep learning
The AppNL-G-F mouse retina is a site for preclinical Alzheimer’s disease diagnosis and research
Biallelic variants in <i>LIG3</i> cause a novel mitochondrial neurogastrointestinal encephalomyopathy
Coenzyme Q biosynthesis inhibition induces HIF‐1α stabilization and metabolic switch toward glycolysis