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Methylmercuric Chloride Induces Activation of Neuronal Stress Circuitry and Alters Exploratory Behavior in the Mouse

机译:甲基汞氯化物诱导神经元应激电路的激活并改变小鼠的探索行为

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摘要

Methylmercury (MeHg) is a well known neurotoxicant, responsible for neurological and cognitive alterations. However, there is very little information available on the effects of MeHg administration on activation of murine neuronal pathways involved in the stress response, and whether this is altered as a function of repeated exposure to MeHg. Moreover, interactions between MeHg and other psychogenic and inflammatory stressors have yet to be fully determined. Acute intraperitoneal (IP) exposure of male C57BL/6J mice to MeHg (2−8 mg/Kg) dose-dependently attenuated exploratory behavior in the open field in the presence and absence of a novel object. In addition, increased numbers of c-Fos immunoreactive cells appeared in response to acute IP and ICV MeHg within thalamic (PVA/PV), hypothalamic (PVN), central amygdaloid (CeC), septal and hippocampal (dentate gyrus) nuclei, medial bed nucleus (BSTm) and the locus coeruleus (Lc). >The increase in c-Fos positive cells in response to acute IP and ICV MeHg did not appear to be influenced further by open field exposure. Repeated administration of MeHg led to an attenuation of most parameters of open field behavior altered by acute MeHg. However, increased c-Fos was significant in the CeC, Dg, supracapsular bed nucleus (BSTs), and Lc. Moreover, open field exposure after repeated treatments resulted in significant c-Fos responses in similar areas. Interestingly, 3 days after the final repeated MeHg dose (2 or 4 mg/kg) c-Fos increases to an immunogenic stressor (LPS) were not affected by MeHg pretreatment. These results demonstrate that systemic exposure to acute and repeated MeHg serves to activate the brain's stress circuitry, and furthermore appears to engage normal neuronal habituation processes.
机译:甲基汞(MeHg)是一种众所周知的神经毒剂,负责神经和认知改变。但是,关于MeHg施用对应激反应中涉及的鼠神经元途径激活的影响以及其是否因重复暴露于MeHg而改变的信息很少。此外,MeHg与其他心理和炎症应激源之间的相互作用尚未完全确定。在存在和不存在新物体的情况下,雄性C57BL / 6J小鼠在MeHg(2-8 mg / Kg)中的急性腹膜内(IP)剂量依赖性减弱其探索行为。此外,丘脑(PVA / PV),下丘脑(PVN),杏仁核(CeC),中隔和海马(齿状回)核,内侧床中的急性IP和ICV MeHg出现时,出现c-Fos免疫反应性细胞数量增加核(BSTm)和蓝斑轨迹(Lc)。 >暴露于急性IP和ICV MeHg的c-Fos阳性细胞的增加似乎未受到露天暴露的进一步影响。重复施用MeHg会导致急性MeHg改变的大多数开放视野行为参数减弱。但是,增加的c-Fos在CeC,Dg,囊上床核(BSTs)和Lc中是显着的。此外,重复治疗后的露天暴露导致类似区域出现明显的c-Fos反应。有趣的是,在最终重复的MeHg剂量(2或4 mg / kg)后3天,c-Fos增加至免疫原性应激源(LPS)不受MeHg预处理的影响。这些结果表明,全身急性和反复的MeHg暴露可激活大脑的压力回路,而且似乎参与了正常的神经元适应过程。

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  • 年(卷),期 -1(148),4
  • 年度 -1
  • 页码 1048–1064
  • 总页数 28
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