Ajakanga垃圾渗滤液对大鼠的遗传毒性和氧化应激电位评价

O. Arojojoye, O. Nwaechefu, Samuel C. Nkwadinamor
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引用次数: 0

摘要

研究了Ajakanga垃圾渗滤液(ALL)的遗传毒性和氧化应激电位。选取Wistar品系雄性白化大鼠42只(100 g和150 g),平均分为6组。A组(对照组)以蒸馏水为饮用水,连续45天;B-F组分别暴露于12.5%、25%、50%、75%和100%渗滤液中45 d。研究了渗滤液对大鼠肝脏、肾脏和睾丸氧化应激标志物的影响;测定血清中肝功能标志物(谷丙转氨酶(ALT)和天冬氨酸转氨酶(AST)),并采用微核试验研究渗滤液的遗传毒性作用。并对渗滤液样品进行了理化和重金属分析。暴露于ALL导致ALT和AST活性增加,与对照组相比,大鼠肝脏、肾脏和睾丸的丙二醛水平显著增加,抗氧化状态发生改变。暴露于渗滤液的大鼠骨髓中微核的形成也显著增加。对渗滤液的理化和重金属分析表明,渗滤液样品中存在高浓度的重金属和其他有毒成分,活性细菌总数也很高。综上所述,ALL可诱导大鼠氧化应激和遗传毒性。这表明,如果人类接触到渗滤液,可能对人类有毒。
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Evaluation of genotoxic and oxidative stress potential of Ajakanga Landfill Leachate in rats
Genotoxicity and oxidative stress potential of Ajakanga Landfill Leachate (ALL) were investigated in this study. Forty-two male albino rats of the Wistar strain (100 g and 150 g) were divided equally into six groups. Group A (control) animals were given distilled water as drinking water for forty-five days; while groups B-F animals were exposed to 12.5%, 25%, 50%, 75% and 100% leachate respectively via drinking water for forty-five days. The effect of the leachate was assessed on markers of oxidative stress in the liver, kidney and testes of rats; markers of liver function (Alanine aminotransferase (ALT) and Aspartate aminotransferase (AST) were determined in the serum and the genotoxic effect of the leachate was investigated using micronucleus assay. Physicochemical and heavy metal analysis were also carried out on the leachate sample. Exposure to ALL resulted in increase in the activities of ALT and AST. A significant increase in malondialdehyde level as well as alterations in antioxidant status was observed in the liver, kidney and testes of the rats compared with control. There was also significant increase in micronuclei formation in the bone marrow of rats exposed to the leachate. Physicochemical and heavy metal analysis of the leachate revealed the presence of some heavy metals at high concentrations as well as other toxic constituents and the total number of active bacteria in the leachate sample were also high. In conclusion, ALL induced oxidative stress and genotoxicity in rats. This suggests that the leachate may be toxic to humans if exposure occurs.
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