Aims/hypothesis: The receptor for AGEs (RAGE) is linked to proinflammatory pathology in a range of tissues. The objective of this study was to assess the potential modulatory role of RAGE in diabetic retinopathy. Methods: Diabetes was induced in wild-type (WT) and Rage mice (also known as Ager mice) using streptozotocin while non-diabetic control mice received saline. For all groups, blood glucose, HbA and retinal levels of methylglyoxal (MG) were evaluated up to 24\ua0weeks post diabetes induction. After mice were killed, retinal glia and microglial activation, vasopermeability, leucostasis and degenerative microvasculature changes were determined. Results: Retinal expression of RAGE in WT diabetic mice was increased after 12\ua0weeks (p <...
Diabetic complications are a leading cause of acquired blindness, end-stage renal failure, and accel...
Angiogenic response is impaired in diabetes. Here, we examined the involvement of receptor for advan...
Hyperglycemic condition in diabetes accelerates formation of advanced glycation end products (AGEs) ...
The advanced glycation end product (AGE)-receptor for AGE (RAGE) pathway is involved in the pathogen...
OBJECTIVE-Activation of the receptor for advanced glycation end products (RAGE) in diabetic vasculat...
Diabetic retinopathy is a major diabetic complication with a highly complex etiology. Although there...
Abstract RAGE is a multiligand receptor for the immunoglobulin superfamily of cell surface molecules...
PurposeVisual function is impaired in diabetes, but molecular causes of this dysfunction are not cle...
The hyperglycaemic state seen in diabetes mellitus is associated with the development of diabetes-sp...
Diabetic retinopathy (DR) is a common and devastating microvascular complication of diabetes and a m...
AGEs accumulate in the Bruch's membrane with a detrimental effect on RPE function with age. Receptor...
Abstract—Receptor for AGE (RAGE) is a multi-ligand member of the immunoglobulin superfamily of cell ...
Longstanding diabetes mellitus damages kidney, retina, peripheral nerve and blood vessels, but brain...
Abstract. As is diabetes itself, diabetic vasculopathy is a multi-factor disease. Studies conducted ...
BACKGROUND: Extensive intracellular and extracellular formation of advanced glycation end-products (...
Diabetic complications are a leading cause of acquired blindness, end-stage renal failure, and accel...
Angiogenic response is impaired in diabetes. Here, we examined the involvement of receptor for advan...
Hyperglycemic condition in diabetes accelerates formation of advanced glycation end products (AGEs) ...
The advanced glycation end product (AGE)-receptor for AGE (RAGE) pathway is involved in the pathogen...
OBJECTIVE-Activation of the receptor for advanced glycation end products (RAGE) in diabetic vasculat...
Diabetic retinopathy is a major diabetic complication with a highly complex etiology. Although there...
Abstract RAGE is a multiligand receptor for the immunoglobulin superfamily of cell surface molecules...
PurposeVisual function is impaired in diabetes, but molecular causes of this dysfunction are not cle...
The hyperglycaemic state seen in diabetes mellitus is associated with the development of diabetes-sp...
Diabetic retinopathy (DR) is a common and devastating microvascular complication of diabetes and a m...
AGEs accumulate in the Bruch's membrane with a detrimental effect on RPE function with age. Receptor...
Abstract—Receptor for AGE (RAGE) is a multi-ligand member of the immunoglobulin superfamily of cell ...
Longstanding diabetes mellitus damages kidney, retina, peripheral nerve and blood vessels, but brain...
Abstract. As is diabetes itself, diabetic vasculopathy is a multi-factor disease. Studies conducted ...
BACKGROUND: Extensive intracellular and extracellular formation of advanced glycation end-products (...
Diabetic complications are a leading cause of acquired blindness, end-stage renal failure, and accel...
Angiogenic response is impaired in diabetes. Here, we examined the involvement of receptor for advan...
Hyperglycemic condition in diabetes accelerates formation of advanced glycation end products (AGEs) ...