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Diabetic nephropathy: Is there a role for oxidative stress?
Manpreet K Sagoo1, Luigi Gnudi1
1School of Cardiovascular Medicine & Sciences, British Heart Foundation Centre of Research Excellence, Faculty of Life Sciences & Medicine, King's College London, 150 Stamford Street, London SE1 9NH, UK.
Abstract:
Oxidative stress has been implicated in the pathophysiology of diabetic nephropathy. Studies in experimental animal models of diabetes strongly implicate oxidant species as a major determinant in the pathophysiology of diabetic kidney disease. The translation, in the clinical setting, of these concepts have been quite disappointing, and new theories have challenged the concepts that oxidative stress per se plays a role in the pathophysiology of diabetic kidney disease. The concept of mitochondrial hormesis has been introduced to explain this apparent disconnect. Hormesis is intended as any cellular process that exhibits a biphasic response to exposure to increasing amounts of a substance or condition: specifically, in diabetic kidney disease, oxidant species may represent, at determined concentration, an essential and potentially protective factor. It could be postulated that excessive production or inhibition of oxidant species formation might result in an adverse phenotype. This review discusses the evidence underlying these two apparent contradicting concepts, with the aim to propose and speculate on potential mechanisms underlying the role of oxidant species in the pathophysiology of diabetic nephropathy and possibly open future more efficient therapies to be tested in the clinical settings.
Insights
Oxidative stress in diabetic nephropathy may be protective at certain levels, challenging previous concepts. This review explores the dual role of oxidants in diabetic kidney disease, suggesting new therapeutic avenues.
Area of Science:
- Nephrology
- Endocrinology
- Biochemistry
Background:
- Oxidative stress is implicated in diabetic nephropathy pathogenesis.
- Animal models suggest oxidants are key in diabetic kidney disease.
- Clinical translation of these findings has been disappointing.
Purpose of the Study:
- To review evidence on the role of oxidant species in diabetic nephropathy.
- To explore the concept of mitochondrial hormesis in this context.
- To propose mechanisms and potential future therapies.
Main Methods:
- Literature review of studies on oxidative stress and diabetic nephropathy.
- Discussion of conflicting concepts regarding oxidant roles.
- Speculation on underlying mechanisms and therapeutic strategies.
Main Results:
- Evidence suggests a biphasic role for oxidants in diabetic kidney disease.
- Mitochondrial hormesis may explain the disconnect between animal models and clinical observations.
- Both excessive production and inhibition of oxidants may lead to adverse outcomes.
Conclusions:
- Oxidant species may play a complex, concentration-dependent role in diabetic nephropathy.
- Understanding hormesis could lead to novel therapeutic approaches.
- Further research is needed to translate these findings into effective clinical treatments for diabetic kidney disease.
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