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Renal oxidative stress induced by long-term hyperuricemia alters mitochondrial function and maintains systemic hypertension.
- Source :
-
Oxidative medicine and cellular longevity [Oxid Med Cell Longev] 2015; Vol. 2015, pp. 535686. Date of Electronic Publication: 2015 Mar 31. - Publication Year :
- 2015
-
Abstract
- We addressed if oxidative stress in the renal cortex plays a role in the induction of hypertension and mitochondrial alterations in hyperuricemia. A second objective was to evaluate whether the long-term treatment with the antioxidant Tempol prevents renal oxidative stress, mitochondrial alterations, and systemic hypertension in this model. Long-term (11-12 weeks) and short-term (3 weeks) effects of oxonic acid induced hyperuricemia were studied in rats (OA, 750 mg/kg BW), OA+Allopurinol (AP, 150 mg/L drinking water), OA+Tempol (T, 15 mg/kg BW), or vehicle. Systolic blood pressure, renal blood flow, and vascular resistance were measured. Tubular damage (urine N-acetyl-β-D-glucosaminidase) and oxidative stress markers (lipid and protein oxidation) along with ATP levels were determined in kidney tissue. Oxygen consumption, aconitase activity, and uric acid were evaluated in isolated mitochondria from renal cortex. Short-term hyperuricemia resulted in hypertension without demonstrable renal oxidative stress or mitochondrial dysfunction. Long-term hyperuricemia induced hypertension, renal vasoconstriction, tubular damage, renal cortex oxidative stress, and mitochondrial dysfunction and decreased ATP levels. Treatments with Tempol and allopurinol prevented these alterations. Renal oxidative stress induced by hyperuricemia promoted mitochondrial functional disturbances and decreased ATP content, which represent an additional pathogenic mechanism induced by chronic hyperuricemia. Hyperuricemia-related hypertension occurs before these changes are evident.
- Subjects :
- Adenosine Triphosphate metabolism
Allopurinol pharmacology
Animals
Antioxidants pharmacology
Blood Pressure drug effects
Cyclic N-Oxides pharmacology
Disease Models, Animal
Hypertension etiology
Hyperuricemia chemically induced
Hyperuricemia complications
Kidney blood supply
Kidney pathology
Male
Mitochondria drug effects
Oxonic Acid toxicity
Oxygen Consumption
Rats
Rats, Sprague-Dawley
Renal Circulation drug effects
Spin Labels
Time Factors
Hypertension pathology
Hyperuricemia pathology
Kidney metabolism
Mitochondria metabolism
Oxidative Stress drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1942-0994
- Volume :
- 2015
- Database :
- MEDLINE
- Journal :
- Oxidative medicine and cellular longevity
- Publication Type :
- Academic Journal
- Accession number :
- 25918583
- Full Text :
- https://doi.org/10.1155/2015/535686