Area of research
Endocrine and Autonomic Systems · Cellular and Molecular Neuroscience
Research interest
Research interests include Biology, Retina, Circadian rhythm, Melatonin, Retinal, and Melatonin receptor.
The Circadian Clock in the Retinal Pigment Epithelium Controls the Diurnal Rhythm of Phagocytic Activity
Administration of Exogenous Melatonin Improves the Diurnal Rhythms of the Gut Microbiota in Mice Fed a High-Fat Diet
Dopamine 2 Receptor Signaling Controls the Daily Burst in Phagocytic Activity in the Mouse Retinal Pigment Epithelium
Removal of clock gene <i>Bmal1</i> from the retina affects retinal development and accelerates cone photoreceptor degeneration during aging
The Retinal Circadian Clock and Photoreceptor Viability
Gnaz couples the circadian and dopaminergic system to G protein-mediated signaling in mouse photoreceptors
Circadian and Dopaminergic Regulation of Fatty Acid Oxidation Pathway Genes in Retina and Photoreceptor Cells
<i>Pgc-1α</i>and<i>Nr4a1</i>Are Target Genes of Circadian Melatonin and Dopamine Release in Murine Retina
Melatonin Signaling Modulates Clock Genes Expression in the Mouse Retina
GPR179 Is Required for Depolarizing Bipolar Cell Function and Is Mutated in Autosomal-Recessive Complete Congenital Stationary Night Blindness
Melatonin: An underappreciated player in retinal physiology and pathophysiology