首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >In vivo Dopamine Efflux is Decreased in Striatum of both Fragment (R6/2) and Full-Length (YAC128) Transgenic Mouse Models of Huntingtons Disease
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In vivo Dopamine Efflux is Decreased in Striatum of both Fragment (R6/2) and Full-Length (YAC128) Transgenic Mouse Models of Huntingtons Disease

机译:亨廷顿氏病的片段(R6 / 2)和全长(YAC128)转基因小鼠模型的纹状体中体内多巴胺流出减少

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摘要

Huntington's disease (HD) is characterized by numerous alterations within the corticostriatal circuitry. The striatum is innervated by a dense array of dopaminergic (DA) terminals and these DA synapses are critical to the proper execution of motor functions. As motor disturbances are prevalent in HD we examined DA neurotransmission in the striatum in transgenic (tg) murine models of HD. We used in vivo microdialysis to compare extracellular concentrations of striatal DA in both a fragment (R6/2) model, which displays a rapid and severe phenotype, and a full-length (YAC128) model that expresses a more progressive phenotype. Extracellular striatal DA concentrations were significantly reduced in R6/2 mice and decreased concomitantly with age-dependent increasing motor impairments on the rotarod task (7, 9, and 11 weeks). In a sample of 11-week-old R6/2 mice, we also measured tissue concentrations of striatal DA and found that total levels of DA were significantly depleted. However, the loss of total DA content (<50%) was insufficient to account for the full extent of DA depletion in the extracellular fluid (ECF; ∼75%). We also observed a significant reduction in extracellular DA concentrations in the striatum of 7-month-old YAC128 mice. In a separate set of experiments, we applied d-amphetamine (AMPH; 10 μm) locally into the striatum to stimulate the release of intracellular DA into the ECF. The AMPH-induced increase in extracellular DA levels was significantly blunted in 9-week-old R6/2 mice. There also was a decrease in AMPH-stimulated DA efflux in 7-month-old YAC128 mice in comparison to WT controls, although the effect was milder. In the same cohort of 7-month-old YAC128 mice we observed a significant reduction in the total locomotor activity in response to systemic AMPH (2 mg/kg). Our data demonstrate that extracellular DA release is attenuated in both a fragment and full-length tg mouse model of HD and support the concept of DA involvement in aspects of the syndrome.
机译:亨廷顿氏病(HD)的特征是皮质口缘回路内有许多改变。纹状体由密集的多巴胺能(DA)末端阵列支配,这些DA突触对于正确执行运动功能至关重要。由于运动障碍在HD中普遍存在,因此我们在HD的转基因(tg)鼠模型中检查了纹状体中的DA神经传递。我们使用了体内微透析技术来比较片段(R6 / 2)模型(显示快速和严重的表型)和全长(YAC128)模型(表达更先进的表型)中纹状体DA的细胞外浓度。在R6 / 2小鼠中,细胞外纹状体DA浓度显着降低,并随年龄增长而增加,其随轮转任务(7、9和11周)增加了年龄依赖性。在11周大的R6 / 2小鼠的样本中,我们还测量了纹状体DA的组织浓度,发现DA的总水平显着减少。但是,总DA含量的损失(<50%)不足以说明细胞外液中DA消耗的全部程度(ECF;约75%)。我们还观察到7个月大的YAC128小鼠纹状体中细胞外DA浓度显着降低。在另一组实验中,我们将d-苯异丙胺(AMPH;10μm)局部应用到纹状体中,以刺激细胞内DA释放到ECF中。在9周龄的R6 / 2小鼠中,AMPH诱导的细胞外DA水平的升高明显减弱。与WT对照相比,在7个月大的YAC128小鼠中,AMPH刺激的DA外排也减少了,尽管效果较温和。在7个月大的YAC128小鼠的同一队列中,我们观察到响应全身性AMPH(2μmg/ kg)的总运动能力显着降低。我们的数据表明,在HD的片段和全长tg小鼠模型中,细胞外DA的释放均减弱,并支持DA参与该综合征方面的概念。

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