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A New Neural Pathway from the Ventral Striatum to the Nucleus Basalis of Meynert with Functional Implication to Learning and Memory

机译:从腹侧纹状体到Meynert基底核的新神经通路对学习和记忆功能具有影响

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摘要

The cholinergic neurons in the nucleus basalis of Meynert (NBM) are among the first group of neurons known to become degenerated in Alzheimer’s disease, and thus the NBM is proposed to be involved in learning and memory. The marginal division (MrD) of the striatum is a newly discovered subdivision at the ventromedial border of the mammalian striatum and is considered to be one part of the ventral striatum involved in learning and memory. The present study provided evidence to support the hypothesis that the MrD and the NBM were structurally connected at cellular and subcellular levels with functional implications in learning and memory. First, when wheat germ agglutinin-conjugated horseradish peroxidase (WGA-HRP) was stereotaxically injected into the NBM, fusiform neurons in the MrD were retrogradely labeled with WGA-HRP gray-blue particles and some of them were double stained in brown color by AchE staining method. Thus, cholinergic neurons of the MrD were shown to project to the neurons in the NBM. Second, in anterograde tract-tracing experiments where WGA-HRP was injected to the MrD, the labeled WGA-HRP was found to be anterogradely transported in axons from the MrD to the synaptic terminals with dendrites, axons, and perikaryons of the cholinergic neurons in the NBM when observed under an electronic microscope, indicating reciprocal structural connections between the MrD and the NBM. Third, when bilateral lesions of the MrD were injured with kainic acid in rats, degenerative terminals were observed in synapses of the NBM by an electronic microscope and severe learning and memory deficiency was found in these rats by the Y-maze behavioral test. Our results suggest reciprocal cholinergic connections between the MrD of the ventral striatum and the NBM, and implicate a role of the MrD-NBM pathway in learning and memory. The efferent fibers of cholinergic neurons in the NBM mainly project to the cortex, and severe reduction of the cholinergic innervation in the cortex is the common feature of Alzheimer’s patients. The newly discovered cholinergic neural pathway between the MrD of the ventral striatum and the NBM is supposed involved in the memory circuitries of the brain and probably might play a role in the pathogenesis of the Alzheimer’s disease.
机译:Meynert(NBM)基底核中的胆碱能神经元是已知在阿尔茨海默氏病中退化的第一批神经元之一,因此,建议将NBM参与学习和记忆。纹状体的边缘区(MrD)是在哺乳动物纹状体的腹内侧边界的新发现的细分,并且被认为是参与学习和记忆的腹侧纹状体的一部分。本研究提供了证据支持MrD和NBM在细胞和亚细胞水平上在结构上相互联系,从而影响学习和记忆的假说。首先,将小麦胚芽凝集素缀合的辣根过氧化物酶(WGA-HRP)立体定位注入NBM中时,MrD中的梭状神经元被WGA-HRP灰蓝色颗粒逆行标记,其中一些被AchE染成棕色染色方法。因此,MrD的胆碱能神经元显示出投射到NBM中的神经元。其次,在将WGA-HRP注射到MrD的顺行道追踪实验中,发现标记的WGA-HRP在轴突中从MrD顺行地转运到胆碱能神经元的树突,轴突和perikaryon。在电子显微镜下观察NBM时,表明MrD和NBM之间存在相互的结构联系。第三,当大鼠海藻酸对MrD的双侧病变造成伤害时,通过电子显微镜在NBM突触中观察到了退化末梢,并且通过Y迷宫行为测试在这些大鼠中发现了严重的学习和记忆不足。我们的结果表明,腹侧纹状体的MrD与NBM之间存在相互的胆碱能联系,并暗示了MrD-NBM途径在学习和记忆中的作用。 NBM中胆碱能神经元的传出纤维主要伸向皮层,而皮层中胆碱能神经支配的严重减少是阿尔茨海默氏病患者的共同特征。新发现的腹侧纹状体MrD与NBM之间的胆碱能神经通路可能参与了大脑的记忆回路,并可能在阿尔茨海默氏病的发病机理中起作用。

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