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Targeting the transcription factor Nrf2 to ameliorate oxidative stress and inflammation in chronic kidney disease
Stacey Ruiz1, Pablo E Pergola, Richard A Zager
1Reata Pharmaceuticals, Irving, Texas, USA.
Abstract:
Oxidative stress and inflammation are mediators in the development and progression of chronic kidney disease (CKD) and its complications, and they are inseparably linked as each begets and amplifies the other. CKD-associated oxidative stress is due to increased production of reactive oxygen species (ROS) and diminished antioxidant capacity. The latter is largely caused by impaired activation of Nrf2, the transcription factor that regulates genes encoding antioxidant and detoxifying molecules. Protective effects of Nrf2 are evidenced by amelioration of oxidative stress, inflammation, and kidney disease in response to natural Nrf2 activators in animal models, while Nrf2 deletion amplifies these pathogenic pathways and leads to autoimmune nephritis. Given the role of impaired Nrf2 activity in CKD-induced oxidative stress and inflammation, interventions aimed at restoring Nrf2 may be effective in retarding CKD progression. Clinical trials of the potent Nrf2 activator bardoxolone methyl showed significant improvement in renal function in CKD patients with type 2 diabetes. However, due to unforeseen complications the BEACON trial, which was designed to investigate the effect of this drug on time to end-stage renal disease or cardiovascular death in patients with advanced CKD, was prematurely terminated. This article provides an overview of the role of impaired Nrf2 activity in the pathogenesis of CKD-associated oxidative stress and inflammation and the potential utility of targeting Nrf2 in the treatment of CKD.
Insights
Impaired Nrf2 activity drives oxidative stress and inflammation in chronic kidney disease (CKD). Restoring Nrf2 function may offer a therapeutic strategy to slow CKD progression, despite trial complications.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- Oxidative stress and inflammation are key drivers in chronic kidney disease (CKD) pathogenesis.
- Impaired activation of the transcription factor Nrf2 reduces antioxidant capacity, exacerbating CKD.
- Nrf2 regulates genes crucial for antioxidant and detoxification responses.
Purpose of the Study:
- To review the role of impaired Nrf2 activity in CKD-associated oxidative stress and inflammation.
- To explore the therapeutic potential of targeting Nrf2 for CKD treatment.
Main Methods:
- Review of existing literature on Nrf2, oxidative stress, inflammation, and CKD.
- Analysis of animal models demonstrating Nrf2's protective and detrimental roles.
- Examination of clinical trial data for Nrf2 activators in CKD patients.
Main Results:
- Nrf2 activation ameliorates oxidative stress, inflammation, and kidney disease in animal models.
- Nrf2 deletion exacerbates pathogenic pathways and leads to autoimmune nephritis.
- Bardoxolone methyl, a potent Nrf2 activator, showed renal function improvement in CKD patients with type 2 diabetes, though a large trial was halted.
Conclusions:
- Restoring Nrf2 activity presents a promising therapeutic avenue for retarding CKD progression.
- Further research is needed to fully understand and safely harness Nrf2-targeting therapies for CKD.
- Targeting Nrf2 may offer a novel strategy to combat the complex interplay of oxidative stress and inflammation in CKD.
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