Diabetic retinopathy: New concepts of screening, monitoring, and interventions
2024/07/03 by Stephen H. Sinclair, Stan Schwartz · 40 citations
Medicine · Neuroscience · Psychology · #Diabetes mellitus #Diabetic retinopathy #Disease #Fluorescein angiography #Fundus photography #Glaucoma and retinal disorders #Macular degeneration #Medicine #Neuroscience #Neurovascular bundle #Ophthalmology #Pathology #Prediabetes #Psychology #Retina #Retinal Diseases and Treatments #Retinal Imaging and Analysis #Retinopathy #Type 2 diabetes #Visual acuity #Visual impairment
paper · pdf · doi:10.1016/j.survophthal.2024.07.001
published in Survey of Ophthalmology 69(6), 882-892 (Elsevier BV)
openalex publication_date 2024/07/03 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/06
Abstract
The science of diabetes care has progressed to provide a better understanding of the oxidative and inflammatory lesions and pathophysiology of the neurovascular unit within the retina (and brain) that occur early in diabetes, even prediabetes. Screening for retinal structural abnormalities, has traditionally been performed by fundus examination or color fundus photography; however, these imaging techniques detect the disease only when there are sufficient lesions, predominantly hemorrhagic, that are recognized to occur late in the disease process after significant neuronal apoptosis and atrophy, as well as microvascular occlusion with alterations in vision. Thus, interventions have been primarily oriented toward the later-detected stages, and clinical trials, while demonstrating a slowing of the disease progression, demonstrate minimal visual improvement and modest reduction in the continued loss over prolonged periods. Similarly, vision measurement utilizing charts detects only problems of visual function late, as the process begins most often parafoveally with increasing number and progressive expansion, including into the fovea. While visual acuity has long been used to define endpoints of visual function for such trials, current methods reviewed herein are found to be imprecise. We review improved methods of testing visual function and newer imaging techniques with the recommendation that these must be utilized to discover and evaluate the injury earlier in the disease process, even in the prediabetic state. This would allow earlier therapy with ocular as well as systemic pharmacologic treatments that lower the and neuro-inflammatory processes within eye and brain. This also may include newer, micropulsed laser therapy that, if applied during the earlier cascade, should result in improved and often normalized retinal function without the adverse treatment effects of standard photocoagulation therapy.
Citations
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