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首页> 外文期刊>Environmental Science and Pollution Research >Manganese attenuates the effects of arsenic on neurobehavioral and biochemical changes in mice co-exposed to arsenic and manganese
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Manganese attenuates the effects of arsenic on neurobehavioral and biochemical changes in mice co-exposed to arsenic and manganese

机译:锰衰减砷对砷和锰的小鼠神经干预和生物化学变化的影响

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An unsafe level of manganese (Mn) was detected in the drinking water in some arsenic (As)-contaminated areas in Bangladesh. Mn is an essential trace element; however, the intake of a higher level of Mn through the drinking water is associated with the development of toxicity in humans. This study was designed to evaluate the effects of As and Mn co-exposure on neurobehavioral and biochemical alterations in a mouse model. Sodium arsenite (10 mg/kg body weight) and manganese chloride tetrahydrate (10 mg/kg body weight) were given to mice individually and in combination with drinking water for 90 days. Results showed that individual As and Mn exposure as well as co-exposure of As and Mn significantly (p < 0.05) reduced the percent of time spent in the open arms when compared with that of control mice. In addition, percent of time spent in open arms significantly (p < 0.05) increased in co-exposed mice compared with As exposure in elevated plus maze (42.05 +/- 1.10 versus 38.94 +/- 0.66). In the Morris water maze test, the mean time latency to find the platform was longer in metal-treated mice in comparison to that of control mice (p < 0.05). Importantly, the co-exposed group had shorter time when compared with the Asexposed group during the training periods (p < 0.05). Moreover, co-exposed mice stayed significantly (p < 0.05) more time in the target quadrant in the probe trial in comparison with that of As-exposed mice (27.25 +/- 1.21 versus 23.83 +/- 0.87 s) but less time than control mice (27.25 +/- 1.21 versus 43.17 +/- 1.49 s). In addition, a significant (p < 0.05) alteration of biochemical parameters such as ALT, AST, ALP, BChE, and SOD as well as urea and creatinine levels were noted in the As-exposed group compared with the control group and Mn significantly (p < 0.05) attenuated the effects of As in co-exposed mice. Therefore, the results of this study suggest that As and Mn may have some antagonistic effect and Mn could attenuate the As-induced neurobehavioral and biochemical alterations in co-exposed mice.
机译:在孟加拉国的一些砷(AS) - 覆盖的地区,在饮用水中检测到不安全的锰(Mn)。 Mn是必不可少的微量元素;然而,通过饮用水进入更高水平的Mn与人类毒性的发展有关。本研究旨在评估DS和Mn Co-暴露对小鼠模型中神经兽性和生化改变的影响。亚砷酸钠(10mg / kg体重)和氯化锰四水合物(10mg / kg体重)单独给小鼠,并与饮用水组合90天。结果表明,与对照小鼠相比,个体和Mn暴露和Mn暴露和Mn的曝光和Mn的曝光和Mn暴露(P <0.05)降低了在张开臂中所花费的时间百分比。此外,在升高的小鼠中,在升高的小鼠中,在开放式臂中花费的时间百分比(P <0.05)增加(42.05 +/- 1.10与38.94 +/- 0.66)。在莫里斯水迷宫试验中,与对照小鼠的对照小鼠相比,在金属处理的小鼠中,发现平台的平均时间延迟(P <0.05)。重要的是,在培训期间与无氧组织相比,共同暴露的组的时间较短(P <0.05)。此外,与暴露的小鼠的探针试验中的探针试验中的靶象限(27.25 +/- 1.21与23.83 +/- 0.87s)相比,共同暴露的小鼠在探针试验中保持显着(p <0.05)的时间更多的时间对照小鼠(27.25 +/- 1.21与43.17 +/- 1.49)。此外,与对照组和MN显着相比,在低暴露的组中,在低暴露的组中,注意到(P <0.05)的生化参数的改变,如ALT,AST,ALP,BCHE和SOD以及尿素和尿素水平( P <0.05)衰减与共同暴露小鼠的影响。因此,本研究的结果表明,AS和Mn可能具有一些拮抗作用,Mn可以衰减共同暴露的小鼠中的诸如诱导的神经饲料和生物化学改变。

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