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Changes in Spontaneous Firing Patterns of Cerebellar Purkinje Cells in p75 Knockout Mice

机译:p75基因敲除小鼠小脑浦肯野细胞自发放电模式的变化

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摘要

The p75 neurotrophin receptor is highly expressed in the developing nervous system and is required for neuronal survival, growth and synaptic transmission. In young mice, p75 is present in both granular cells and Purkinje cells of the cerebellum. Although p75 has been implicated in modulation of neuronal excitability in several neuronal types, whether and how it affects the excitability of cerebellar Purkinje neurons remained unclear. Using extracellular recordings of spontaneous firing of Purkinje neurons in cerebellar slices prepared from wild type and p75 knockout mice, we measured intrinsic firing properties in the presence of fast synaptic blockers of more than 200 Purkinje cells, each for a period of 5 min, for each genotype. We detected a significant increase in the mean firing frequency in p75−/− neurons comparing to the wild type littermates. Upon separating tonically firing from phasically firing cells, i.e. cells with firing pauses of longer than 300 msec, we observed that the change mainly arose from phasic firing cells and can be explained by an increase in the firing/silence ratio and a decrease in the number of long pauses during the 5-min recording period. We conclude that p75 plays an important role in regulating the firing-to-silence transition during the phasic firing period of the spontaneous firing of Purkinje cells. Thus, p75 exerts a modulatory function on Purkinje cell firing patterns, through which it may act as a key player in motor coordination and other cerebellum-regulated activities since Purkinje cells represent the sole neuronal output of the cerebellar cortex.
机译:p75神经营养蛋白受体在发育中的神经系统中高度表达,是神经元生存,生长和突触传递所必需的。在年轻小鼠中,小脑的颗粒细胞和浦肯野细胞中都存在p75。尽管在某些神经元类型中已经牵涉到p75参与神经元兴奋性的调节,但是尚不清楚p75是否以及如何影响小脑浦肯野神经元的兴奋性。使用从野生型和p75基因敲除小鼠制备的小脑切片中Purkinje神经元自发放电的细胞外记录,我们在存在200多个Purkinje细胞的快速突触阻断剂的情况下,测量了固有放电特性,每种持续5分钟,每个基因型。与野生型同窝仔相比,我们发现p75 -/-神经元的平均放电频率显着增加。在将有声发射与有声发射的停顿时间大于300毫秒的有声发射细胞分开后,我们观察到这种变化主要是由有声发射的细胞引起的,并且可以用发射/沉默比的增加和数量的减少来解释在5分钟的录制时间内长时间停顿。我们得出的结论是,p75在浦肯野细胞自发放电的阶段性放电期间,在调节从点火到沉默的转变中起着重要作用。因此,p75对浦肯野细胞的放电模式起调节作用,由于浦肯野细胞代表小脑皮层的唯一神经元输出,因此它可以充当运动协调和其他小脑调节活动的关键参与者。

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