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首页> 外文期刊>Neuropharmacology >Region-specific elevation of D 1 receptor-mediated neurotransmission in the nucleus accumbens of SHR, a rat model of attention deficit/hyperactivity disorder
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Region-specific elevation of D 1 receptor-mediated neurotransmission in the nucleus accumbens of SHR, a rat model of attention deficit/hyperactivity disorder

机译:SHR伏伏核中D 1受体介导的神经传递的区域特异性升高,这是一种注意缺陷/多动障碍的大鼠模型

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Spontaneously hypertensive rats (SHR) are widely used as a rat model of attention deficit/hyperactivity disorder (AD/HD). Here, we conducted neurochemical and behavioral studies in SHR to clarify the topographical alterations in neurotransmissions linked to their behavioral abnormalities. In the open-field test, juvenile SHR showed a significant hyperactivity in ambulation and rearing as compared with Wistar Kyoto rats (WKY). Brain mapping analysis of Fos-immunoreactivity (IR) revealed that SHR showed a marked increase in Fos expression in the core part (AcC) of the nucleus accumbens (NAc). Small to moderate increases were also observed in the shell part of the NAc and some regions of the cerebral cortex (e.g., parietal association cortex). These changes in Fos expression were region-specific and the Fos-IR levels in other brain regions (e.g., hippocampus, amygdala, striatum, thalamus and hypothalamus) were unaltered. In addition, treatment of SHR with the selective D 1 antagonist SCH-23390 significantly reversed both behavioral hyperactivity and elevated Fos expression in the AcC and cerebral cortex. The present study suggests that D 1 receptor-mediated neurotransmission in the AcC is region-specifically elevated in SHR, which could be responsible for behavioral hyperactivity.
机译:自发性高血压大鼠(SHR)被广泛用作注意力缺陷/多动障碍(AD / HD)的大鼠模型。在这里,我们在SHR中进行了神经化学和行为研究,以阐明与行为异常相关的神经传递的地形变化。在野外试验中,与Wistar Kyoto大鼠(WKY)相比,幼年SHR在行走和饲养方面表现出明显的活动过度。 Fos免疫反应性(IR)的脑图分析表明,SHR在伏伏核(NAc)的核心部分(AcC)中显示出Fos表达的明显增加。在NAc的壳部分和大脑皮质的某些区域(例如顶叶缔合皮质)中也观察到了小到中等的增加。 Fos表达的这些变化是区域特异性的,其他大脑区域(例如,海马,杏仁核,纹状体,丘脑和下丘脑)的Fos-IR水平保持不变。此外,用选择性D 1拮抗剂SCH-23390治疗SHR可以显着逆转行为过度活跃和AcC和大脑皮层Fos表达升高。本研究表明,Ac C中的D 1受体介导的神经传递在SHR中区域特异性升高,这可能是行为过度活跃的原因。

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