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Flavocoxid, a Natural Antioxidant, Protects Mouse Kidney from Cadmium-Induced Toxicity

Authors :
Giovanni Pallio
Consuelo Malta
Letteria Minutoli
Natasha Irrera
Domenico Puzzolo
Antonio Micali
Giuseppe Santoro
Francesco Squadrito
Vincenzo Trichilo
Herbert Marini
Domenica Altavilla
Antonina Pisani
R. Laurà
Domenico Santoro
Antonino Germanà
Source :
Oxidative Medicine and Cellular Longevity, Vol 2018 (2018), Oxidative Medicine and Cellular Longevity
Publication Year :
2018
Publisher :
Hindawi, 2018.

Abstract

Background. Cadmium (Cd), a diffused environmental pollutant, has adverse effects on urinary apparatus. The role of flavocoxid, a natural flavonoid with antioxidant activity, on the morphological and biochemical changes induced in vivo by Cd in mice kidney was evaluated. Methods. C57 BL/6J mice received 0.9% NaCl alone, flavocoxid (20 mg/kg/day i.p.) alone, Cd chloride (CdCl2) (2 mg/kg/day i.p.) alone, or CdCl2 plus flavocoxid (2 mg/kg/day i.p. plus 20 mg/kg/day i.p.) for 14 days. The kidneys were processed for biochemical, structural, ultrastructural, and morphometric evaluation. Results. Cd treatment alone significantly increased urea nitrogen and creatinine, iNOS, MMP-9, and pERK 1/2 expression and protein carbonyl; reduced GSH, GR, and GPx; and induced structural and ultrastructural changes in the glomeruli and in the tubular epithelium. After 14 days of treatment, flavocoxid administration reduced urea nitrogen and creatinine, iNOS, MMP-9, and pERK 1/2 expression and protein carbonyl; increased GSH, GR, and GPx; and showed an evident preservation of the glomerular and tubular structure and ultrastructure. Conclusions. A protective role of flavocoxid against Cd-induced oxidative damages in mouse kidney was demonstrated for the first time. Flavocoxid may have a promising antioxidant role against environmental Cd harmful effects on glomerular and tubular lesions.

Details

Language :
English
ISSN :
19420900
Database :
OpenAIRE
Journal :
Oxidative Medicine and Cellular Longevity
Accession number :
edsair.doi.dedup.....30c26258a20d857821f885599560ab35
Full Text :
https://doi.org/10.1155/2018/9162946