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Reactive Oxygen Species and Nuclear Factor Erythroid 2-Related Factor 2 Activation in Diabetic Nephropathy: A Hidden
Shaaban Abdo1, Shao-Ling Zhang1, John S D Chan1
1Department of Medicine, University of Montreal and Research Center Hospital of QC, Canada.
Abstract:
Hyperglycemia, oxidative stress and renin-angiotensin system (RAS) dysfunction have been implicated in diabetic nephropathy (DN) progression, but the underlying molecular mechanisms are far from being fully understood. In addition to the systemic RAS, the existence of a local intrarenal RAS in renal proximal tubular cells has been recognized. Angiotensinogen is the sole precursor of all angiotensins (Ang). Intrarenal reactive oxygen species (ROS) generation, Ang II level and RAS gene expression are up-regulated in diabetes, indicating that intrarenal ROS and RAS activation play an important role in DN. The nuclear factor erythroid 2-related factor 2 (Nrf2)-Kelch-like ECH-associated protein 1 (Keap1) pathway is one of the major protective processes that occurs in response to intracellular oxidative stress. Nrf2 stimulates an array of antioxidant enzymes that convert excessive ROS to less reactive or less damaging forms. Recent studies have, however, revealed that Nrf2 activation might have other undesirable effects in diabetic animals and in diabetic patients with chronic kidney disease. This mini-review summarizes current knowledge of the relationship between ROS, Nrf2 and intra renal RAS activation in DN progression as well as possible novel target(s) for DN treatment.
Insights
Diabetic nephropathy (DN) involves hyperglycemia, oxidative stress, and renin-angiotensin system (RAS) dysfunction. The Nrf2 pathway
Area of Science:
- Nephrology
- Endocrinology
- Molecular Biology
Background:
- Diabetic nephropathy (DN) progression is linked to hyperglycemia, oxidative stress, and renin-angiotensin system (RAS) dysfunction.
- A local intrarenal RAS exists in renal proximal tubular cells, with angiotensinogen as the sole precursor for angiotensins.
- Intrarenal reactive oxygen species (ROS) and RAS activation are upregulated in diabetes, highlighting their role in DN.
Purpose of the Study:
- To review the interplay between ROS, Nrf2, and intrarenal RAS activation in DN.
- To explore potential novel therapeutic targets for DN treatment.
Main Methods:
- Literature review of current knowledge on ROS, Nrf2, and intrarenal RAS in DN.
- Analysis of the role of the Nrf2-Keap1 pathway in response to oxidative stress in the context of diabetes.
Main Results:
- Nrf2 activation, a key antioxidant pathway, may have detrimental effects in diabetic conditions.
- The relationship between ROS, Nrf2, and intrarenal RAS activation is complex and contributes to DN progression.
Conclusions:
- Understanding the intricate relationship between ROS, Nrf2, and intrarenal RAS is crucial for developing effective DN treatments.
- Targeting these pathways may offer novel therapeutic strategies for managing diabetic nephropathy.
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