Related Experiment Video
Updated: May 4, 2026

Behavioral Assessment of Visual Function via Optomotor Response and Cognitive Function via Y-Maze in Diabetic Rats
Published on: October 23, 2020
Dopamine deficiency contributes to early visual dysfunction in a rodent model of type 1 diabetes
Moe H Aung1, Han Na Park, Moon K Han
1Department of Neuroscience, Department of Ophthalmology, Department of Endocrinology, and Department of Pharmacology, Emory University, Atlanta, Georgia 30322, and Rehab R&D Center of Excellence and Biomedical Laboratory Research and Development, Atlanta VA Medical Center, Atlanta, Georgia 30033.
Abstract:
Dopamine (DA) functions as an essential neuromodulator in the brain and retina such that disruptions in the dopaminergic system are associated with common neurologic disorders such as Parkinson's disease. Although a reduction in DA content has been observed in diabetes, its effects in the development of diabetes-induced neuropathy remains unknown. Because the retina is rich in DA and has a well known diabetes-induced pathology (diabetic retinopathy or DR), this study was designed to examine the role of retinal DA deficiency in early visual defects in DR. Using rodent models of type 1 diabetes mellitus, we investigated whether diabetes caused a reduction in retinal DA content in both rats and mice and determined whether restoring DA levels or activating specific DA receptor pathways could improve visual function (evaluated with optokinetic tracking response) of diabetic mice, potentially via improvement of retinal function (assessed with electroretinography). We found that diabetes significantly reduced DA levels by 4 weeks in rats and by 5 weeks in mice, coincident with the initial detection of visual deficits. Treatment with l-DOPA, a DA precursor, improved overall retinal and visual functions in diabetic mice and acute treatment with DA D1 or D4 receptor agonists improved spatial frequency threshold or contrast sensitivity, respectively. Together, our results indicate that retinal DA deficiency is an underlying mechanism for early, diabetes-induced visual dysfunction and suggest that therapies targeting the retinal dopaminergic system may be beneficial in early-stage DR.
Related Concept Videos
Diabetic Retinopathy
Type I Diabetes II: Pathophysiology
Type I Diabetes III: Clinical Manifestations
Type I Diabetes I: Introduction
Type II Diabetes II: Pathophysiology

