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Effect of Chronic Lead Exposure on Pro-apoptotic Bax and Anti-apoptotic Bcl-2 Protein Expression in Rat Hippocampus in Vivo

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Publisher Springer
Date 2010 Feb 12
PMID 20148304
Citations 15
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Abstract

Despite reduction in environmental lead, chronic lead exposure still possess a public health hazard, particularly in children, with devastating effects on developing CNS. To investigate the mechanism of this neurotoxicity, young and adult rats were used to study whether exposure to 500 ppm concentrations of lead could induce apoptosis in hippocampus. 2-4 and 12-14-week-old rats received lead acetate in concentration of 500 ppm for 40 days. Control animals received deionized distilled water. In lead-treated groups, the blood lead levels were increased by 3-4 folds. Light and electron microscopical study of hippocampus revealed increased apoptotic cells. Western blot analysis of Bax and Bcl-2 (pro- and anti-apoptotic gene products, respectively) indicated higher expression of Bax protein and no significant change in bcl-2 expression and accordingly increased the Bax/Bcl-2 ratio compared to control group, confirming the histological study. In conclusion, these data suggest that neurotoxicity of chronic lead exposure in hippocampus in vivo may partly be due to facilitation of apoptosis.

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References
1.
Niu Y, Zhang R, Cheng Y, Sun X, Tian J . [Effect of lead acetate on the apoptosis and the expression of bcl-2 and bax genes in rat brain cells]. Zhonghua Yu Fang Yi Xue Za Zhi. 2002; 36(1):30-3. View

2.
Winneke G, Kramer U . Neurobehavioral aspects of lead neurotoxicity in children. Cent Eur J Public Health. 1997; 5(2):65-9. View

3.
Yin C, Knudson C, Korsmeyer S, Van Dyke T . Bax suppresses tumorigenesis and stimulates apoptosis in vivo. Nature. 1997; 385(6617):637-40. DOI: 10.1038/385637a0. View

4.
Sharifi A, Mousavi S . Studying the effects of lead on DNA fragmentation and proapoptotic bax and antiapoptotic bcl-2 protein expression in PC12 cells. Toxicol Mech Methods. 2009; 18(1):75-9. DOI: 10.1080/15376510701665814. View

5.
Yang E, Korsmeyer S . Molecular thanatopsis: a discourse on the BCL2 family and cell death. Blood. 1996; 88(2):386-401. View