Protection against methylglyoxal-derived AGEs by regulation of glyoxalase 1 prevents retinal neuroglial and vasodegenerative pathology
2011/12/05 by A. K. Berner, Andre Berner, Olaf Brouwers +21 · 30 citations
Biochemistry, Genetics and Molecular Biology · Medicine · #Advanced Glycation End Products research #Retinal Diseases and Treatments #Chronic Kidney Disease and Diabetes
paper · pdf · doi:10.1007/s00125-011-2393-0
Citations
Cited by
- Diabetic retinopathy: hyperglycaemia, oxidative stress and beyond
- Role of the receptor for advanced glycation endproducts (RAGE) in retinal vasodegenerative pathology during diabetes in mice
- Methylglyoxal in Metabolic Disorders: Facts, Myths, and Promises
- The role of methylglyoxal and the glyoxalase system in diabetes and other age-related diseases
- Methylglyoxal and Its Adducts: Induction, Repair, and Association with Disease
- Reactive carbonyl species and their roles in sarcoplasmic reticulum Ca2+ cycling defect in the diabetic heart. [europepmc]
- Neurodegeneration in the pathogenesis of diabetic retinopathy: molecular mechanisms and therapeutic implications. [europepmc]
- The role of O-GlcNAc signaling in the pathogenesis of diabetic retinopathy. [europepmc]
- Methylglyoxal as a new biomarker in patients with septic shock: an observational clinical study. [europepmc]
- Role of the receptor for advanced glycation endproducts (RAGE) in retinal vasodegenerative pathology during diabetes in mice. [europepmc]
- Prevention of protein glycation by natural compounds. [europepmc]
- The protection conferred against ischemia-reperfusion injury in the diabetic brain by N-acetylcysteine is associated with decreased dicarbonyl stress. [europepmc]
- Dicarbonyls and glyoxalase in disease mechanisms and clinical therapeutics. [europepmc]
- The Glyoxalase System and Methylglyoxal-Derived Carbonyl Stress in Sepsis: Glycotoxic Aspects of Sepsis Pathophysiology. [europepmc]
- Ager Deletion Enhances Ischemic Muscle Inflammation, Angiogenesis, and Blood Flow Recovery in Diabetic Mice. [europepmc]
- Dicarbonyl stress and glyoxalase enzyme system regulation in human skeletal muscle. [europepmc]
- Too sweet: Problems of protein glycation in the eye. [europepmc]
- Dicarbonyl Stress and Glyoxalase-1 in Skeletal Muscle: Implications for Insulin Resistance and Type 2 Diabetes. [europepmc]
- Activation of the unfolded protein response in high glucose treated endothelial cells is mediated by methylglyoxal. [europepmc]
- The combination of loss of glyoxalase1 and obesity results in hyperglycemia. [europepmc]
- Discovery of GLO1 New Related Genes and Pathways by RNA-Seq on A2E-Stressed Retinal Epithelial Cells Could Improve Knowledge on Retinitis Pigmentosa. [europepmc]
- Elevated 4-hydroxynonenal induces hyperglycaemia via Aldh3a1 loss in zebrafish and associates with diabetes progression in humans. [europepmc]
- Glyoxalase System as a Therapeutic Target against Diabetic Retinopathy. [europepmc]
- The Role of Lipoxidation in the Pathogenesis of Diabetic Retinopathy. [europepmc]
- Diabetic Complications and Oxidative Stress: A 20-Year Voyage Back in Time and Back to the Future. [europepmc]
- The Glyoxalase System in Age-Related Diseases: Nutritional Intervention as Anti-Ageing Strategy. [europepmc]
- Normalizing HIF-1α Signaling Improves Cellular Glucose Metabolism and Blocks the Pathological Pathways of Hyperglycemic Damage. [europepmc]
- Emerging Glycation-Based Therapeutics-Glyoxalase 1 Inducers and Glyoxalase 1 Inhibitors. [europepmc]
- Methylglyoxal and Its Adducts: Induction, Repair, and Association with Disease. [europepmc]
- Classification of diabetic retinopathy: Past, present and future. [europepmc]