Antagonistic effectiveness of Anacardium occidentale leaf extract on lead-acetate exposure-induced hepatorenal toxicity in rats

Author:

Aminu Aisha,Umar Hauwa Onozasi,Makena WusaORCID,Isa Zakaria Alhaji,Goni Zainab Muhammad,Onimisi Onyinoyi Bethel,Ishaku Barka

Abstract

Lead (Pb) poisoning is an environmental substance that accumulates in the hepato-renal tissue, which is hazardous to health, while <i>Anacardium occidentale</i> L. is a tropical herb used to treat oxidative stress and inflammatory diseases. The aim of this study was to investigate the antagonistic effect of <i>Anacardium occidentale</i> leaf extract on lead acetate exposure-induced hepatorenal toxicity in rats. Thirty-six adult Wistar rats were split into six equal groups (n = 6). Group I served as a control, and groups II and III were administered lead acetate (50 mg/kg) and <i>Anacardium occidentale</i> leaf extract (400 mg/kg), respectively, while rats in groups IV–VI were administered <i>Anacardium occidentale</i> (L) extract (200 mg/kg and 400 mg/kg) and 10 mg/kg of Succimer, respectively, and were then administered lead acetate (50 mg/kg). When compared to the group I, rats administered lead acetate showed an increase in hepatic enzymes, urea, creatinine, MDA, TNF-α, and IL-1β (p < 0.001) levels and decreased levels of SOD, CAT, and GSH, whereas <i>Anacardium occidentale</i> prevented the increase in hepatorenal function parameters, oxidative stress, and inflammatory markers (TNF-α and IL-1β) induced by lead acetate. Rats administered only lead acetate had a marked increase in hepatic Pb concentration, severe hepatic steatosis, and renal glomerulus degeneration. However, treatment with <i>Anacardium occidentale</i> extract and succimer decreases the Pb concentration, oxidative stress, and inflammation, and also reduces histological liver steatosis and glomerular cytoarchitecture deterioration in the kidney. The results of this study revealed that <i>Anacardium occidentale</i> extract protects against lead acetate-induced liver and kidney toxicity by decreasing oxidative stress and inflammation.

Publisher

The Korean Society of Environmental Health and Toxicology

Subject

General Earth and Planetary Sciences,General Engineering,General Environmental Science

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