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首页> 外文期刊>Experimental Neurology >Subchronic dermal application of N,N-diethyl m-toluamide (DEET) and permethrin to adult rats, alone or in combination, causes diffuse neuronal cell death and cytoskeletal abnormalities in the cerebral cortex and the hippocampus, and Purkinje neuron l
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Subchronic dermal application of N,N-diethyl m-toluamide (DEET) and permethrin to adult rats, alone or in combination, causes diffuse neuronal cell death and cytoskeletal abnormalities in the cerebral cortex and the hippocampus, and Purkinje neuron l

机译:N,N-二乙基间甲苯胺(DEET)和苄氯菊酯对成年大鼠的亚慢性皮肤应用可单独或组合导致大脑皮层和海马以及浦肯野神经元中弥漫性神经元细胞死亡和细胞骨架异常

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摘要

N,N-Diethyl m-toluamide (DEET) and permethrin have been implicated as potential neurotoxic agents that may have played an important role in the development of illnesses in some veterans of the Persian Gulf War. To determine the effect of subchronic dermal application of these chemicals on the adult brain, we evaluated histopathological alterations in the brain of adult male rats following a daily dermal dose of DEET (40 mg/kg in 70% ethanol) or permethrin (0.13 mg/kg in 70% ethanol) or a combination of the two for 60 days. Control rats received a daily dermal dose of 70% ethanol for 60 days. Animals were perfused and brains were processed for morphological and histopathological analyses following the above regimen. Quantification of the density of healthy (or surviving) neurons in the motor cerebral cortex, the dentate gyrus, the CA1 and CA3 subfields of the hippocampus, and the cerebellum revealed significant reductions in all three treated groups compared with the control group. Further, animals receiving either DEET or permethrin exhibited a significant number of degenerating (eosinophilic) neurons in the above brain regions. However, degenerating neurons were infrequent in animals receiving both DEET and permethrin, suggesting that neuronal cell death occurs earlier in animals receiving combined DEET and permethrin than in animals receiving either DEET or permethrin alone. The extent of neuron loss in different brain regions was similar among the three treatment groups except the dentate gyrus, where neurodegeneration was significantly greater with exposure to DEET alone. The neuron loss in the motor cerebral cortex and the CA1 subfield of all treated groups was also corroborated by a significant decrease in microtubule associated protein 2-immunoreactive elements (15-52% reduction), with maximal reductions occurring in rats receiving DEET alone; further, the surviving neurons in animals receiving both DEET and permethrin exhibited wavy and beaded dendrites. Analysis of glial fibrillary acidic protein immunoreactivity revealed significant hypertrophy of astrocytes in the hippocampus and the cerebellum of all treated groups (24-106% increase). Thus, subchronic dermal application of DEET and permethrin to adult rats, alone or in combination, leads to a diffuse neuronal cell death in the cerebral cortex, the hippocampal formation, and the cerebellum. Collectively, the above alterations can lead to many physiological, pharmacological, and behavioral abnormalities, particularly motor deficits and learning and memory dysfunction.
机译:N,N-二乙基间甲苯胺(DEET)和苄氯菊酯被认为是潜在的神经毒性剂,可能在波斯湾战争的一些退伍军人的疾病发展中发挥了重要作用。为了确定这些化学药品在亚慢性皮肤中的应用对成年大脑的影响,我们评估了每日经皮剂量的DEET(70%乙醇中40 mg / kg)或苄氯菊酯(0.13 mg / kg)后成年雄性大鼠脑组织病理学的变化。公斤,在70%的乙醇中)或两者结合60天。对照大鼠接受每日皮肤剂量的70%乙醇60天。按照上述方案对动物进行灌注并处理大脑以进行形态学和组织病理学分析。对运动大脑皮层,齿状回,海马CA1和CA3子区以及小脑中健康(或存活)神经元的密度进行定量分析,与对照组相比,所有三个治疗组均显着减少。此外,接受DEET或苄氯菊酯的动物在上述大脑区域表现出大量的变性(嗜酸性)神经元。然而,在同时接受DEET和苄氯菊酯的动物中,退化的神经元很少见,这表明接受DEET和苄氯菊酯联合的动物比单独接受DEET或苄氯菊酯的动物发生神经元细胞死亡的时间更早。在三个治疗组中,除齿状回之外,不同脑区神经元的丧失程度相似,其中仅暴露于DEET时神经变性明显增加。所有治疗组的运动大脑皮层和CA1子区的神经元损失也通过微管相关蛋白2-免疫反应性元素的显着减少(减少了15-52%)得到证实,其中仅接受DEET的大鼠出现了最大程度的减少。此外,接受DEET和苄氯菊酯的动物中存活的神经元表现出波浪状和串珠状树突。对神经胶质原纤维酸性蛋白免疫反应性的分析显示,所有治疗组的海马和小脑中星形胶质细胞均明显肥大(增加24-106%)。因此,将DEET和苄氯菊酯皮下注射到成年大鼠的皮下,单独或组合使用,会导致大脑皮层,海马结构和小脑中弥漫性神经元细胞死亡。总的来说,上述改变可导致许多生理,药理和行为异常,特别是运动缺陷和学习记忆功能障碍。

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