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Oxidative stress and diabetic retinopathy: Molecular mechanisms, pathogenetic role and therapeutic implications
Qingzheng Kang1, Chunxue Yang2
1Institute for Advanced Study, Shenzhen University, Nanshan District, Shenzhen, 518060, China; Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China.
Abstract:
Oxidative stress, a cytopathic outcome of excessive generation of ROS and the repression of antioxidant defense system for ROS elimination, is involved in the pathogenesis of multiple diseases, including diabetes and its complications. Retinopathy, a microvascular complication of diabetes, is the primary cause of acquired blindness in diabetic patients. Oxidative stress has been verified as one critical contributor to the pathogenesis of diabetic retinopathy. Oxidative stress can both contribute to and result from the metabolic abnormalities induced by hyperglycemia, mainly including the increased flux of the polyol pathway and hexosamine pathway, the hyper-activation of protein kinase C (PKC) isoforms, and the accumulation of advanced glycation end products (AGEs). Moreover, the repression of the antioxidant defense system by hyperglycemia-mediated epigenetic modification also leads to the imbalance between the scavenging and production of ROS. Excessive accumulation of ROS induces mitochondrial damage, cellular apoptosis, inflammation, lipid peroxidation, and structural and functional alterations in retina. Therefore, it is important to understand and elucidate the oxidative stress-related mechanisms underlying the progress of diabetic retinopathy. In addition, the abnormalities correlated with oxidative stress provide multiple potential therapeutic targets to develop safe and effective treatments for diabetic retinopathy. Here, we also summarized the main antioxidant therapeutic strategies to control this disease.
Insights
Oxidative stress contributes to diabetic retinopathy, a leading cause of blindness. Understanding these mechanisms and antioxidant therapies is crucial for treating this diabetes complication.
Area of Science:
- Ophthalmology
- Endocrinology
- Biochemistry
Background:
- Diabetic retinopathy is a major cause of blindness in diabetic patients.
- Oxidative stress is a critical factor in diabetic retinopathy pathogenesis.
- Hyperglycemia-induced metabolic abnormalities exacerbate oxidative stress.
Purpose of the Study:
- To elucidate oxidative stress mechanisms in diabetic retinopathy.
- To identify therapeutic targets for diabetic retinopathy treatment.
Main Methods:
- Review of literature on oxidative stress and diabetic retinopathy.
- Analysis of hyperglycemia-induced metabolic pathways and their link to oxidative stress.
- Summary of antioxidant therapeutic strategies.
Main Results:
- Oxidative stress, driven by excessive reactive oxygen species (ROS) and impaired antioxidant defenses, underlies diabetic retinopathy.
- Hyperglycemia promotes pathways (polyol, hexosamine), protein kinase C (PKC) activation, and advanced glycation end products (AGEs), increasing ROS.
- Epigenetic modifications by hyperglycemia further suppress antioxidant systems, leading to ROS imbalance, mitochondrial damage, apoptosis, and retinal damage.
Conclusions:
- Oxidative stress is a key driver of diabetic retinopathy progression.
- Targeting oxidative stress pathways offers potential therapeutic strategies for diabetic retinopathy.
- Further research into antioxidant therapies is warranted for effective treatment.
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