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Distribution and Structure of Synapses on Medial Vestibular Nuclear Neurons Targeted by Cerebellar Flocculus Purkinje Cells and Vestibular Nerve in Mice: Light and Electron Microscopy Studies

机译:小鼠小脑小叶Purkinje细胞和前庭神经对内侧前庭核神经元突触的分布和结构:光学和电子显微镜研究

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摘要

Adaptations of vestibulo-ocular and optokinetic response eye movements have been studied as an experimental model of cerebellum-dependent motor learning. Several previous physiological and pharmacological studies have consistently suggested that the cerebellar flocculus (FL) Purkinje cells (P-cells) and the medial vestibular nucleus (MVN) neurons targeted by FL (FL-targeted MVN neurons) may respectively maintain the memory traces of short- and long-term adaptation. To study the basic structures of the FL-MVN synapses by light microscopy (LM) and electron microscopy (EM), we injected green florescence protein (GFP)-expressing lentivirus into FL to anterogradely label the FL P-cell axons in C57BL/6J mice. The FL P-cell axonal boutons were distributed in the magnocellular MVN and in the border region of parvocellular MVN and prepositus hypoglossi (PrH). In the magnocellular MVN, the FL-P cell axons mainly terminated on somata and proximal dendrites. On the other hand, in the parvocellular MVN/PrH, the FL P-cell axonal synaptic boutons mainly terminated on the relatively small-diameter (< 1 μm) distal dendrites of MVN neurons, forming symmetrical synapses. The majority of such parvocellular MVN/PrH neurons were determined to be glutamatergic by immunocytochemistry and in-situ hybridization of GFP expressing transgenic mice. To further examine the spatial relationship between the synapses of FL P-cells and those of vestibular nerve on the neurons of the parvocellular MVN/PrH, we added injections of biotinylated dextran amine into the semicircular canal and anterogradely labeled vestibular nerve axons in some mice. The MVN dendrites receiving the FL P-cell axonal synaptic boutons often closely apposed vestibular nerve synaptic boutons in both LM and EM studies. Such a partial overlap of synaptic boutons of FL P-cell axons with those of vestibular nerve axons in the distal dendrites of MVN neurons suggests that inhibitory synapses of FL P-cells may influence the function of neighboring excitatory synapses of vestibular nerve in the parvocellular MVN/PrH neurons.
机译:适应性的前庭眼和视动反应的眼睛运动已作为小脑依赖运动学习的实验模型进行了研究。先前的几项生理学和药理学研究一致表明,FL靶向的小脑絮状细胞(P)Purkinje细胞(P-细胞)和内侧前庭神经核(MVN)神经元(FL靶向的MVN神经元)可能分别维持短的记忆痕迹-和长期适应。为了通过光学显微镜(LM)和电子显微镜(EM)研究FL-MVN突触的基本结构,我们将表达绿色荧光蛋白(GFP)的慢病毒注入FL中,以顺行地标记C57BL / 6J中的FL P细胞轴突。老鼠。 FL P细胞的轴突突分布在小细胞MVN和小细胞MVN与垂体前叶(PrH)的边界区域。在大细胞MVN中,FL-P细胞轴突主要终止于躯体和近端树突上。另一方面,在细小细胞MVN / PrH中,FL P细胞轴突突触按钮主要终止于相对较小直径(<1μm)的MVN神经元远端树突,形成对称突触。通过免疫细胞化学和表达GFP的转基因小鼠的原位杂交,确定大多数此类细小细胞MVN / PrH神经元是谷氨酸能的。为了进一步检查FL P细胞突触与小细胞MVN / PrH神经元前庭神经突触之间的空间关系,我们在部分小鼠中向半规管和经顺行标记的前庭神经轴突添加了生物素化的葡聚糖胺注射液。在LM和EM研究中,接受FL P细胞轴突突触钮扣的MVN树突通常紧密贴合前庭神经突触钮扣。 FL P细胞轴突的突触钮扣与MVN神经元远端树突中前庭神经轴突的突触重叠有部分重叠,这表明FL P细胞的抑制突触可能影响小细胞MVN中前庭神经的邻近兴奋性突触的功能。 / PrH神经元。

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