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Diabetes, oxidative stress and therapeutic strategies
Luc Rochette1, Marianne Zeller1, Yves Cottin1
1Laboratoire de Physiopathologie et Pharmacologie Cardio-Métaboliques, INSERM UMR866, Université de Bourgogne, Facultés de Médecine et Pharmacie, 7 Boulevard Jeanne d'Arc, 21079 Dijon, France.
Background:
Diabetes has emerged as a major threat to health worldwide.
Scope Of Review:
The exact mechanisms underlying the disease are unknown; however, there is growing evidence that excess generation of reactive oxygen species (ROS), largely due to hyperglycemia, causes oxidative stress in a variety of tissues. Oxidative stress results from either an increase in free radical production, or a decrease in endogenous antioxidant defenses, or both. ROS and reactive nitrogen species (RNS) are products of cellular metabolism and are well recognized for their dual role as both deleterious and beneficial species. In type 2 diabetic patients, oxidative stress is closely associated with chronic inflammation. Multiple signaling pathways contribute to the adverse effects of glucotoxicity on cellular functions. There are many endogenous factors (antioxidants, vitamins, antioxidant enzymes, metal ion chelators) that can serve as endogenous modulators of the production and action of ROS. Clinical trials that investigated the effect of antioxidant vitamins on the progression of diabetic complications gave negative or inconclusive results. This lack of efficacy might also result from the fact that they were administered at a time when irreversible alterations in the redox status are already under way. Another strategy to modulate oxidative stress is to exploit the pleiotropic properties of drugs directed primarily at other targets and thus acting as indirect antioxidants.
Major Conclusions:
It appears important to develop new compounds that target key vascular ROS producing enzymes and mimic endogenous antioxidants.
General Significance:
This strategy might prove clinically relevant in preventing the development and/or retarding the progression of diabetes associated with vascular diseases.
Insights
Developing new compounds targeting reactive oxygen species (ROS) enzymes may combat diabetes complications. This approach aims to mimic natural antioxidants, offering a promising strategy for managing vascular diseases linked to diabetes.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Diabetes mellitus is a global health crisis.
- Hyperglycemia in diabetes elevates reactive oxygen species (ROS) production, leading to oxidative stress.
- Oxidative stress, an imbalance between ROS/reactive nitrogen species (RNS) and antioxidant defenses, is linked to chronic inflammation and cellular dysfunction in type 2 diabetes.
Purpose of the Study:
- To explore the role of oxidative stress in diabetes pathogenesis.
- To evaluate the efficacy of antioxidant interventions in managing diabetic complications.
- To identify novel therapeutic strategies for modulating ROS production in diabetes.
Main Methods:
- Review of existing literature on oxidative stress mechanisms in diabetes.
- Analysis of clinical trial data on antioxidant therapies.
- Exploration of indirect antioxidant strategies using existing drugs.
Main Results:
- Previous trials with antioxidant vitamins showed limited or inconclusive benefits.
- The timing of antioxidant administration may be critical, as irreversible redox alterations can occur early in diabetes.
- Indirect antioxidant effects of drugs targeting other conditions represent a potential therapeutic avenue.
Conclusions:
- New compounds targeting vascular ROS-producing enzymes are needed.
- Developing agents that mimic endogenous antioxidants could be beneficial.
- This strategy holds clinical relevance for preventing and managing diabetes-associated vascular diseases.
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