4.6 Article

Phorate-induced oxidative stress, DNA damage and transcriptional activation of p53 and caspase genes in male Wistar rats

Journal

TOXICOLOGY AND APPLIED PHARMACOLOGY
Volume 259, Issue 1, Pages 54-65

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.taap.2011.12.006

Keywords

Organophosphates; Phorate; Toxicity; Histopathology; Apoptosis; Pesticide

Funding

  1. Al-jeraisy Chair for DNA Research, Department of Zoology, College of Science
  2. Research Center of Pharmacy, King Saud University, Riyadh, Saudi Arabia
  3. Canada Research Chair
  4. large Chair Professorship at the Department of Biology and Chemistry
  5. State Key Laboratory in Marine Pollution, City University of Hong Kong
  6. Chinese Academy of Sciences
  7. King Saud University

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Male Wistar rats exposed to a systemic organophosphorus insecticide, phorate [O,O-diethyl S-[(ethylthio) methyl] phosphorothioate] at varying oral doses of 0.046, 0.092 or 0.184 mg phorate/kg bw for 14 days, exhibited substantial oxidative stress, cellular DNA damage and activation of apoptosis-related p53, caspase 3 and 9 genes. The histopathological changes including the pyknotic nuclei, inflammatory leukocyte infiltrations, renal necrosis, and cardiac myofiber degeneration were observed in the liver, kidney and heart tissues. Biochemical analysis of catalase and glutathione revealed significantly lesser activities of antioxidative enzymes and lipid peroxidation in tissues of phorate exposed rats. Furthermore, generation of intracellular reactive oxygen species and reduced mitochondrial membrane potential in bone marrow cells confirmed phorate-induced oxidative stress. Significant DNA damage was measured through comet assay in terms of the Olive tail moment in bone marrow cells of treated animals as compared to control. Cell cycle analysis also demonstrated the G(2)/M arrest and appearance of a distinctive SubG(1) peak, which signified induction of apoptosis. Up-regulation of tumor suppressor p53 and caspase 3 and 9 genes, determined by quantitative real-time PCR and enzyme-linked immunosorbent assay, elucidated the activation of intrinsic apoptotic pathways in response to cellular stress. Overall, the results suggest that phorate induces genetic alterations and cellular toxicity, which can adversely affect the normal cellular functioning in rats. (C) 2011 Elsevier Inc. All rights reserved.

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