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1.
Int J Mol Sci ; 20(8)2019 Apr 23.
Article En | MEDLINE | ID: mdl-31018590

Pigment nephropathy is an acute decline in renal function following the deposition of endogenous haem-containing proteins in the kidneys. Haem pigments such as myoglobin and haemoglobin are filtered by glomeruli and absorbed by the proximal tubules. They cause renal vasoconstriction, tubular obstruction, increased oxidative stress and inflammation. Haem is associated with inflammation in sterile and infectious conditions, contributing to the pathogenesis of many disorders such as rhabdomyolysis and haemolytic diseases. In fact, haem appears to be a signalling molecule that is able to activate the inflammasome pathway. Recent studies highlight a pathogenic function for haem in triggering inflammatory responses through the activation of the nucleotide-binding domain-like receptor protein 3 (NLRP3) inflammasome. Among the inflammasome multiprotein complexes, the NLRP3 inflammasome has been the most widely characterized as a trigger of inflammatory caspases and the maturation of interleukin-18 and -1ß. In the present review, we discuss the latest evidence on the importance of inflammasome-mediated inflammation in pigment nephropathy. Finally, we highlight the potential role of inflammasome inhibitors in the prophylaxis and treatment of pigment nephropathy.


Heme/immunology , Inflammasomes/immunology , Inflammation/immunology , Kidney Diseases/immunology , Kidney/immunology , NLR Family, Pyrin Domain-Containing 3 Protein/immunology , Animals , Diabetic Nephropathies/immunology , Diabetic Nephropathies/pathology , Hemoglobins/immunology , Humans , Inflammation/pathology , Kidney/pathology , Kidney Diseases/pathology , Models, Molecular , Myoglobin/immunology
3.
Free Radic Biol Med ; 101: 176-189, 2016 12.
Article En | MEDLINE | ID: mdl-27769920

BACKGROUND: Acute kidney injury (AKI) is the most severe complication of rhabdomyolysis. Allopurinol (Allo), a xanthine oxidase inhibitor, has been in the spotlight in the last decade due to new therapeutic applications related to its potent antioxidant effect. The aim of this study was to evaluate the efficacy of Allo in the prevention and treatment of rhabdomyolysis-associated AKI. METHODS: Male Wistar rats were divided into five groups: saline control group; prophylactic Allo (300mg/L of drinking water, 7 days); glycerol (50%, 5ml/kg, IM); prophylactic Allo + glycerol; and therapeutic Allo (50mg/Kg, IV, 30min after glycerol injection) + glycerol. RESULTS: Glycerol-injected rats showed markedly reduced glomerular filtration rate associated with renal vasoconstriction, renal tubular damage, increased oxidative stress, apoptosis and inflammation. Allo ameliorated all these alterations. We found 8-isoprostane-PGF2a (F2-IsoP) as a main factor involved in the oxidative stress-mediated renal vasoconstriction following rhabdomyolysis. Allo reduced F2-IsoP renal expression and restored renal blood flow. Allo also reduced oxidative stress in the damaged muscle, attenuated muscle lesion/inflammation and accelerated muscular recovery. Moreover, we showed new insights into the pathogenesis of rhabdomyolysis-associated AKI, whereas Allo treatment reduced renal inflammation by decreasing renal tissue uric acid levels and consequently inhibiting the inflammasome cascade. CONCLUSIONS: Allo treatment attenuates renal dysfunction in a model of rhabdomyolysis-associated AKI by reducing oxidative stress (systemic, renal and muscular), apoptosis and inflammation. This may represent a new therapeutic approach for rhabdomyolysis-associated AKI - a new use for an old and widely available medication.


Acute Kidney Injury/prevention & control , Allopurinol/pharmacology , Dinoprost/analogs & derivatives , Free Radical Scavengers/pharmacology , Reactive Oxygen Species/antagonists & inhibitors , Rhabdomyolysis/prevention & control , Acute Kidney Injury/chemically induced , Acute Kidney Injury/complications , Acute Kidney Injury/pathology , Animals , Apoptosis/drug effects , Dinoprost/antagonists & inhibitors , Dinoprost/biosynthesis , Epithelial Cells/drug effects , Epithelial Cells/metabolism , Epithelial Cells/pathology , Glycerol , Kidney Tubules/drug effects , Kidney Tubules/metabolism , Kidney Tubules/pathology , Male , Muscle Cells/drug effects , Muscle Cells/metabolism , Muscle Cells/pathology , Muscle, Skeletal/drug effects , Muscle, Skeletal/metabolism , Muscle, Skeletal/pathology , Oxidation-Reduction , Oxidative Stress/drug effects , Rats , Rats, Wistar , Reactive Oxygen Species/metabolism , Rhabdomyolysis/chemically induced , Rhabdomyolysis/complications , Rhabdomyolysis/pathology
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