Article citationsMore>>
Kang, G.J., Kang, N.J., Han, S.C., Koo, D.H., Kang, H.K., Yoo, B.S. and Yoo, E.S. (2012) The Chloroform Fraction of Carpinus tschonoskii Leaves Inhibits the Production of Inflammatory Mediators in HaCaT Keratinocytes and RAW264.7 Macrophages. Toxicological Research, 28, 255-262.
https://doi.org/10.5487/TR.2012.28.4.255
has been cited by the following article:
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TITLE:
Antioxidant and Anti-Inflammatory Effects of Nano-Selenium against Cypermethrin-Induced Liver Toxicity
AUTHORS:
Rania H. Abdou, Noha Sayed
KEYWORDS:
Cypermethrin, Oxidative Stress, Anti-Inflammatory, Hepatoprotective, Nano-Selenium
JOURNAL NAME:
CellBio,
Vol.8 No.4,
December
31,
2019
ABSTRACT: Cypermethrin (Cym) is a synthetic class II pyrethroid that is widely used and has a big risk to health. Cypermethrin produces oxidative stress and enhances inflammatory damage of liver. The present study was designed to investigate the ameliorating effects of NSe against Cym-induced hepatotoxicity in rats. For this purpose, twenty four male rats were divided into three groups. Group (I) was gavaged with Cym (control group), group (II) gavaged daily with Cym (1 mg/kg body weight), and group (III) gavaged with Cym + NSe (2.5 mg kg body weight/day, three times a week) for 21 days. Cypermethrin increased serum liver enzymes, oxidative stress and inflammatory markers. Administration of NSe significantly reduced the increased serum liver enzymes and inflammatory parameters and restored the antioxidant capacity in liver. Our results suggest that Nse exhibits promising hepato-protective effects against Cym-induced oxidative damage and inflammation.