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Developmental Regulation of Basket/Stellate Cell→Purkinje Cell Synapses in the Cerebellum

机译:小脑篮/星状细胞→Purkinje细胞突触的发育调控

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摘要

We used paired recordings to study the development of synaptic transmission between inhibitory interneurons of the molecular layer and Purkinje cells in the cerebellar cortex of the rat. The electrophysiological data were combined with a morphological study of the recorded cells using biocytin or Lucifer yellow staining. Thirty-one interneuron–Purkinje cell pairs were obtained, and 11 of them were recovered morphologically. The age of the rats ranged from 11 to 31 d after birth. During this period synaptic maturation resulted in an 11-fold decrease in the average current evoked in a Purkinje cell by a spike in a presynaptic interneuron. Unitary IPSCs in younger animals exhibited paired-pulse depression, whereas paired-pulse facilitation was found in more mature animals. These data suggest that reduction in transmitter release probability contributed to the developmental decrease of unitary IPSCs. However, additional mechanisms at both presynaptic and postsynaptic loci should also be considered. The decrease of the average synaptic current evoked in a Purkinje cell by an action potential in a single interneuron suggests that as development proceeds interneuron activities must be coordinated to inhibit efficiently Purkinje cells.
机译:我们使用配对的记录来研究大鼠小脑皮质的分子层抑制性中间神经元与Purkinje细胞之间突触传递的发展。使用生物素或路西法黄染色将电生理数据与记录细胞的形态学研究相结合。获得了31对interneuron-Purkinje细胞对,其中11对在形态学上得到了恢复。出生后大鼠的年龄为11至31天。在此期间,由于突触前神经元的突增,在浦肯野细胞中引起的平均电流降低了11倍。幼小的动物中的单一IPSC表现出成对脉冲抑制,而成年成年动物则具有成对脉冲促进作用。这些数据表明,发射机释放概率的降低有助于单一IPSC的发展。但是,还应考虑突触前和突触后基因座的其他机制。单个中间神经元中动作电位引起的浦肯野细胞引起的平均突触电流的减少表明,随着发育的进行,必须协调神经元的活性以有效抑制浦肯野细胞。

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