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Mechanisms contributing to cluster formation in the inferior olivary nucleus in brainstem slices from postnatal mice

机译:产后小鼠脑干切片下橄榄核中簇形成的机制

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摘要

>Abstract The inferior olivary nucleus (IO) in in vitro slices from postnatal mice (P5.5–P15.5) spontaneously generates clusters of neurons with synchronous calcium transients, and intracellular recordings from IO neurons suggest that electrical coupling between neighbouring IO neurons may serve as a synchronizing mechanism. Here, we studied the cluster-forming mechanism and find that clusters overlap extensively with an overlap distribution that resembles the distribution for a random overlap model. The average somatodendritic field size of single curly IO neurons was ∼6400 μm2, which is slightly smaller than the average IO cluster size. Eighty-seven neurons with overlapping dendrites were estimated to be contained in the principal olive mean cluster size, and about six non-overlapping curly IO neurons could be contained within the largest clusters. Clusters could also be induced by iontophoresis with glutamate. Induced clusters were inhibited by tetrodotoxin, carbenoxelone and 18β-glycyrrhetinic acid, suggesting that sodium action potentials and electrical coupling are involved in glutamate-induced cluster formation, which could also be induced by activation of N-methyl-d-aspartate and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors. Spikelets and a small transient depolarizing response were observed during glutamate-induced cluster formation. Calcium transients spread with decreasing velocity during cluster formation, and somatic action potentials and cluster formation are accompanied by large dendritic calcium transients. In conclusion, cluster formation depends on gap junctions, sodium action potentials and spontaneous clusters occur randomly throughout the IO. The relative slow signal spread during cluster formation, combined with a strong dendritic influx of calcium, may signify that active dendritic properties contribute to cluster formation.
机译:>摘要产后小鼠(P5.5–P15.5)体外切片中的下橄榄核(IO)自发生成具有同步钙瞬变的神经元簇,并且IO神经元的细胞内记录表明相邻IO神经元之间的耦合可以用作同步机制。在这里,我们研究了聚类形成机制,发现聚类具有与随机重叠模型相似的重叠分布。单个卷曲IO神经元的平均树突状视野大小为〜6400μm 2 ,略小于平均IO簇大小。据估计,在主要的橄榄平均簇大小中包含有87个树突重叠的神经元,并且在最大的簇中可以包含大约6个不重叠的卷曲IO神经元。谷氨酸离子电渗疗法也可以诱导簇。河豚毒素,羧苄酮和18β-甘草次酸抑制诱导的团簇,表明谷氨酸诱导的团簇形成涉及钠动作电位和电耦合,这也可以由N-甲基-d-天冬氨酸和α-氨基的活化来诱导。 -3-羟基-5-甲基-4-异恶唑丙酸受体。在谷氨酸诱导的簇形成过程中观察到小尖峰和小的瞬时去极化反应。钙瞬变在团簇形成期间以降低的速度扩散,并且体细胞动作电位和团簇形成伴随着大的树突钙瞬变。总之,簇的形成取决于间隙连接,钠作用电位和自发簇在整个IO中随机发生。团簇形成过程中相对较慢的信号传播,与强的树突状钙流入相结合,可能表明活跃的树突性质有助于团簇形成。

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