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Author Spotlight: Understanding Retinal Vessel Resilience and Disease Progression
Published on: January 12, 2024
Retinylamine Benefits Early Diabetic Retinopathy in Mice
Haitao Liu1, Jie Tang1, Yunpeng Du1
1From the Departments of Medicine and.
Abstract:
Recent evidence suggests an important role for outer retinal cells in the pathogenesis of diabetic retinopathy (DR). Here we investigated the effect of the visual cycle inhibitor retinylamine (Ret-NH2) on the development of early DR lesions. Wild-type (WT) C57BL/6J mice (male, 2 months old when diabetes was induced) were made diabetic with streptozotocin, and some were given Ret-NH2 once per week. Lecithin-retinol acyltransferase (LRAT)-deficient mice and P23H mutant mice were similarly studied. Mice were euthanized after 2 (WT and Lrat(-/-)) and 8 months (WT) of study to assess vascular histopathology, accumulation of albumin, visual function, and biochemical and physiological abnormalities in the retina. Non-retinal effects of Ret-NH2 were examined in leukocytes treated in vivo. Superoxide generation and expression of inflammatory proteins were significantly increased in retinas of mice diabetic for 2 or 8 months, and the number of degenerate retinal capillaries and accumulation of albumin in neural retina were significantly increased in mice diabetic for 8 months compared with nondiabetic controls. Administration of Ret-NH2 once per week inhibited capillary degeneration and accumulation of albumin in the neural retina, significantly reducing diabetes-induced retinal superoxide and expression of inflammatory proteins. Superoxide generation also was suppressed in Lrat(-/-) diabetic mice. Leukocytes isolated from diabetic mice treated with Ret-NH2 caused significantly less cytotoxicity to retinal endothelial cells ex vivo than did leukocytes from control diabetics. Administration of Ret-NH2 once per week significantly inhibited the pathogenesis of lesions characteristic of early DR in diabetic mice. The visual cycle constitutes a novel target for inhibition of DR.
Insights
Retinylamine (Ret-NH2), a visual cycle inhibitor, effectively reduced early diabetic retinopathy (DR) lesions in mice by decreasing retinal inflammation and capillary damage, highlighting the visual cycle as a therapeutic target for DR.
Area of Science:
- Ophthalmology
- Diabetology
- Pharmacology
Background:
- Outer retinal cells play a significant role in diabetic retinopathy (DR) pathogenesis.
- Early DR lesions involve increased oxidative stress and inflammation in the retina.
Purpose of the Study:
- To investigate the therapeutic potential of retinylamine (Ret-NH2), a visual cycle inhibitor, on early diabetic retinopathy development.
- To assess the impact of Ret-NH2 on retinal oxidative stress, inflammation, and vascular pathology in diabetic mouse models.
Main Methods:
- Diabetic mouse models (streptozotocin-induced, LRAT-deficient, P23H mutant) were treated with retinylamine (Ret-NH2).
- Retinal vascular histopathology, albumin accumulation, visual function, and biochemical markers were assessed.
- Ex vivo analysis of leukocyte cytotoxicity on retinal endothelial cells was performed.
Main Results:
- Retinylamine (Ret-NH2) administration significantly inhibited capillary degeneration and albumin accumulation in diabetic mouse retinas.
- Ret-NH2 treatment markedly reduced diabetes-induced retinal superoxide generation and inflammatory protein expression.
- Leukocytes from Ret-NH2 treated diabetic mice exhibited reduced cytotoxicity towards retinal endothelial cells.
Conclusions:
- The visual cycle inhibitor retinylamine (Ret-NH2) effectively ameliorates key pathological features of early diabetic retinopathy in mice.
- Targeting the visual cycle presents a novel therapeutic strategy for inhibiting the progression of diabetic retinopathy.

