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重复接触六氯萘对大鼠行为的影响。

Behavioral effects following repeated exposure to hexachloronaphthalene in rats.

机构信息

Department of Toxicology, Faculty of Pharmacy, Medical University, Lodz, Poland.

出版信息

Neurotoxicology. 2012 Jun;33(3):361-9. doi: 10.1016/j.neuro.2012.02.011. Epub 2012 Feb 25.

Abstract

Polychlorinated naphthalenes (PCNs), including hexachloronaphthalene (HxCN), are widespread global environmental contaminants. Our experiments were aimed at assessing HxCN effects on motor behavior, long-term memory, pain sensitivity, magnitude of stress-induced analgesia, auditory function and sensorimotor gating, following repeated intragastric administration (28 days) of HxCN at 0.3 and 1.0 mg/kg body weight. Three weeks after the exposure termination, male Wistar rats were subjected to the neurobehavioral tests battery performed in the following order: open-field test, passive avoidance test, hot-plate test and acoustic startle response test. Repeated administration of HxCN induced disorders of motivational processes manifested by: anorectic effect caused by aphagia and adipsia; significantly reduced motor activity (hypokinesia); impaired long-term memory and acquired passive avoidance reaction; reduced pain threshold and shortened duration of anxiety reaction after pain stimulus (sensory neglect). Some of these neurobehavioral effects (impaired long-term memory, reduced pain threshold and stress-induced analgesia) were observed at 0.3 mgHxCN/kg body weight without any signs of overt toxicity. The outcome of our study shows that HxCN, like other compounds of the persistent organic pollutants (POPs) group, creates a potential risk of behavioral changes in the central nervous system in the general population as a result of environmental exposure.

摘要

多氯萘(PCNs),包括六氯萘(HxCN),是广泛存在于全球环境中的污染物。我们的实验旨在评估 HxCN 对运动行为、长期记忆、疼痛敏感性、应激诱导镇痛的幅度、听觉功能和感觉门控的影响,这些影响是通过重复经口给予 HxCN(0.3 和 1.0mg/kg 体重)28 天引起的。暴露终止后 3 周,雄性 Wistar 大鼠接受神经行为测试组合,按照以下顺序进行:旷场试验、被动回避试验、热板试验和听觉惊跳反应试验。HxCN 的重复给药引起动机过程障碍,表现为:摄食和饮水减少引起的厌食症;运动活动明显减少(运动不能);长期记忆和获得性被动回避反应受损;疼痛刺激后疼痛阈值降低和焦虑反应持续时间缩短(感觉忽略)。这些神经行为效应中的一些(长期记忆受损、疼痛阈值降低和应激诱导镇痛)在 0.3mgHxCN/kg 体重时观察到,而没有任何明显的毒性迹象。我们的研究结果表明,HxCN 与持久性有机污染物(POPs)组的其他化合物一样,由于环境暴露,对普通人群的中枢神经系统行为变化构成潜在风险。

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