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Glutamatergic and cholinergic pedunculopontine neurons innervate the thalamic parafascicular nucleus in rats: changes following experimental parkinsonism

机译:谷氨酸能和胆碱能的足小神经元神经支配大鼠丘脑束旁核:实验性帕金森病后的变化

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The tegmental pedunculopontine nucleus (PPN) is a basal ganglia-related structure that has recently gained renewed interest as a potential surgical target for the treatment of several aspects of Parkinson’s disease. However, the underlying anatomical substrates sustaining the choice of the PPN nucleus as a surgical candidate remain poorly understood. Here, we characterized the chemical phenotypes of different subtypes of PPN efferent neurons innervating the rat parafascicular (PF) nucleus. Emphasis was placed on elucidating the impact of unilateral nigrostriatal denervation on the expression patterns of the mRNA coding the vesicular glutamate transporter type 2 (vGlut2 mRNA). We found a bilateral projection from the PPN nucleus to the PF nucleus arising from cholinergic and glutamatergic efferent neurons, with a small fraction of projection neurons co-expressing both cholinergic and glutamatergic markers. Furthermore, the unilateral nigrostriatal depletion induced a bilateral twofold increase in the expression levels of vGlut2 mRNA within the PPN nucleus. Our results support the view that heterogeneous chemical profiles account for PPN efferent neurons innervating thalamic targets. Moreover, a bilateral enhancement of glutamatergic transmission arising from the PPN nucleus occurs following unilateral dopaminergic denervation, therefore sustaining the well-known hyperactivity of the PF nucleus in parkinsonian-like conditions. In conclusion, our data suggest that the ascending projections from the PPN that reach basal ganglia-related targets could play an important role in the pathophysiology of Parkinson’s disease.
机译:被盖上的足小脑桥骨核(PPN)是与基底神经节相关的结构,最近已引起了人们的兴趣,成为治疗帕金森氏病几个方面的潜在手术靶标。然而,维持PPN核作为外科手术候选者的基础解剖基底仍然知之甚少。在这里,我们表征了支配大鼠束旁(PF)核的PPN传出神经元的不同亚型的化学表型。重点放在阐明单侧黑纹状体神经支配对编码2型囊泡谷氨酸转运蛋白的mRNA(vGlut2 mRNA)的表达模式的影响。我们发现,从PPN核到PF核的双侧投影是由胆碱能和谷氨酸能传入神经元引起的,有一小部分投影神经元共同表达了胆碱能和谷氨酸能标记。此外,单侧黑质纹状体耗竭导致PPN核内vGlut2 mRNA的表达水平双倍增加。我们的研究结果支持以下观点:异质化学特征解释了支配丘脑靶点的PPN传出神经元。此外,单侧多巴胺能神经支配后,PPN核会引起谷氨酸能传递的双边增强,因此在帕金森氏样情况下维持了PF核的众所周知的过度活跃。总之,我们的数据表明,从PPN到达基础神经节相关目标的上升预测可能在帕金森氏病的病理生理学中起重要作用。

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