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首页> 外文期刊>Toxicology and Industrial Health >Neurobehavioral alterations and histopathological changes in brain and spinal cord of rats intoxicated with acrylamide
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Neurobehavioral alterations and histopathological changes in brain and spinal cord of rats intoxicated with acrylamide

机译:丙烯酰胺中毒大鼠脑和脊髓的神经行为改变和组织病理学变化

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The aim of this project was to study the clinical manifestations, neurobehavioral, hematobiochemical, oxidative stress, genotoxicity, and histopathological changes during acrylamide toxicity in rats. A total of 30 adult male Wistar rats were divided in 5 equal groups and received 0, 10, 15, and 20 mg/kg body weight acrylamide as oral gavage, while group 5 was micronucleus (MN) control. Functional observational battery (FOB) parameters were studied at the 28th day of post treatment. Toxicological manifestations were evident in acrylamide-treated rats from 14th day onward. FOB revealed a significant change in central nervous system, neuromuscular, and autonomic domains. The hematological changes include significant decrease in concentration of hemoglobin, total erythrocyte count, packed cell volume, and mean corpuscular volume. The biochemical parameters aspartate aminotransferases, alkaline phosphatase, and albumin showed significant increase, while the levels of serum globulin and glucose were found to decrease significantly. The MN assay revealed the significant increase in frequencies of micronuclei and number of polychromatic erythrocytes. The oxidative stress parameters revealed no significant difference as compared to control rats. Histopathological changes observed in brain include neuronal degeneration, edema, and congestion, while spinal cord revealed demyelination in low-dose group and bilateral necrosis with malacia, liquefaction of white matter, and loss of myelin from gray matter in high-dose groups. The result indicates pathological alterations in brain and spinal cord and is responsible for neurobehavioral changes in rats. The FOB changes and histopathological alterations in spinal cord are in dose dependent to acrylamide intoxication. Various toxicological effects observed in experiment direct us to focus on a deep study and evaluate the possible causes pertaining to toxicity of this chemical. It would furnish the scientists with better options that would help them to search for a median path regarding the use of this chemical and take preventive measures to save the living beings from the hidden disasters of this chemical.
机译:该项目的目的是研究丙烯酰胺毒性大鼠的临床表现,神经行为,血液生化,氧化应激,遗传毒性和组织病理学变化。将总共​​30只成年雄性Wistar大鼠分成5组,每组分别口服0、10、15和20 mg / kg体重的丙烯酰胺作为口服管,而第5组为微核(MN)对照。治疗后第28天研究了功能性观察电池(FOB)参数。从第14天开始,在用丙烯酰胺治疗的大鼠中毒理学表现很明显。 FOB显示中枢神经系统,神经肌肉和自主神经域发生了显着变化。血液学变化包括血红蛋白浓度,总红细胞数,堆积细胞体积和平均红细胞体积显着降低。天冬氨酸转氨酶,碱性磷酸酶和白蛋白的生化指标显着升高,而血清球蛋白和葡萄糖水平则显着降低。 MN分析显示微核的频率和多色红细胞的数量显着增加。与对照组相比,氧化应激参数没有显着差异。在大脑中观察到的组织病理学变化包括神经元变性,水肿和充血,而脊髓显示低剂量组脱髓鞘,双侧坏死伴软化,白质液化以及高剂量组灰质脱髓鞘。结果表明大脑和脊髓的病理改变,是大鼠神经行为改变的原因。脊髓中的FOB变化和组织病理学改变取决于丙烯酰胺中毒的剂量。在实验中观察到的各种毒理作用使我们专注于深入研究并评估与该化学品毒性有关的可能原因。这将为科学家提供更好的选择,这将有助于他们寻找有关该化学物质使用的中间路线,并采取预防措施,以使生物免于这种化学物质的隐患。

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