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铁纳米颗粒对大鼠认知任务表现的影响。

The effect of iron nanoparticles on performance of cognitive tasks in rats.

作者信息

Sheida Elena, Sipailova Olga, Miroshnikov Sergei, Sizova Elena, Lebedev Svyatoslav, Rusakova Elena, Notova Svetlana

机构信息

Orenburg State University, Orenburg, Russia.

Federal State Budgetary Scientific Institution "All-Russian Research Institute of Beef Cattle Breeding", Orenburg, Russia.

出版信息

Environ Sci Pollut Res Int. 2017 Mar;24(9):8700-8710. doi: 10.1007/s11356-017-8531-6. Epub 2017 Feb 16.

Abstract

To assess the influence of 62.5 ± 0.6 nm iron nanoparticles on the status of central nervous system, a study was conducted on Wistar rats, which were subjected to abdominal injection of the studied nanoparticles at doses of 2 and 14 mg/kg. Based on the analysis of the structural and functional status of the cerebral cortex of rats, behavioral reactions of animals, and the elemental composition of the cerebral cortex, we investigated the nanoparticles' neurotoxic effect, whose degree and nature varied depending on the dosage and the time elapsed after the injection. We identified pathological changes in motor and somatosensory areas of the rats' cerebral cortex and established pronounced changes in the elemental homeostasis of the animals' cerebral cortex in experimental groups. Identified structural changes were accompanied by an increase in exploratory activity, locomotor activity, and emotional status of the animals. At that, these activities were more pronounced in rats, which were administered iron nanoparticles at a dose of 14 mg/kg. By the end of the experiment, the excitation processes prevailed over the inhibition processes that have led to the inhibition of central nervous system activity in experimental animals against the adaptation to stress in rats of the control group.

摘要

为评估62.5±0.6纳米铁纳米颗粒对中枢神经系统状态的影响,对Wistar大鼠进行了一项研究,这些大鼠经腹腔注射剂量为2毫克/千克和14毫克/千克的受试纳米颗粒。基于对大鼠大脑皮质的结构和功能状态、动物行为反应以及大脑皮质元素组成的分析,我们研究了纳米颗粒的神经毒性作用,其程度和性质因剂量以及注射后经过的时间而异。我们确定了大鼠大脑皮质运动和躯体感觉区域的病理变化,并发现实验组动物大脑皮质的元素稳态发生了明显变化。所确定的结构变化伴随着动物探索活动、运动活动和情绪状态的增加。此时,这些活动在接受14毫克/千克铁纳米颗粒剂量的大鼠中更为明显。到实验结束时,兴奋过程超过了抑制过程,导致实验动物中枢神经系统活动受到抑制,而对照组大鼠则适应了应激。

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