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db/db小鼠小脑浦肯野神经元自发放电动作电位的发放频率增加,是由于自身节律性改变和GABA能紧张性抑制减弱所致。

Increased firing frequency of spontaneous action potentials in cerebellar Purkinje neurons of db/db mice results from altered auto-rhythmicity and diminished GABAergic tonic inhibition.

作者信息

Forero-Vivas María E, Hernández-Cruz Arturo

机构信息

Chemistry Department, Faculty of Science, Antonio Nariño University, Bogotá, Colombia.

出版信息

Gen Physiol Biophys. 2014;33(1):29-41. doi: 10.4149/gpb_2013056. Epub 2013 Dec 13.

Abstract

The hormone leptin, by binding to hypothalamic receptors, suppresses food intake and decreases body adiposity. Leptin receptors are also widely expressed in extra-hypothalamic areas such as hippocampus, amygdala and cerebellum, where leptin modulates synaptic transmission. Here we show that a defective leptin receptor affects the electrophysiological properties of cerebellar Purkinje neurons (PNs). PNs from (db/db) mice recorded in cerebellar slices display a higher firing rate of spontaneous action potentials than PNs from wild type (WT) mice. Blockade of GABAergic tonic inhibition with bicuculline in WT mice changes the firing pattern from continuous, uninterrupted spiking into bursting firing, but bicuculline does not produce these alterations in db/db neurons, suggesting that they receive a weaker GABAergic inhibitory input. Our results also show that the intrinsic firing properties (auto-rhythmicity) of WT and db/db PNs are different. Tonic firing of PNs, the only efferent output from the cerebellar cortex, is a persistent signal to downstream cerebellar targets. The significance of leptin modulation of PNs spontaneous firing is not known. Also, it is not clear if the increased excitability of cerebellar PNs in db/db mice results from hyperglycemia or from the lack of leptin signaling, since both conditions coexist in the db/db strain.

摘要

激素瘦素通过与下丘脑受体结合,抑制食物摄入并降低身体肥胖程度。瘦素受体也广泛表达于海马体、杏仁核和小脑等下丘脑外区域,在这些区域瘦素可调节突触传递。在此我们表明,有缺陷的瘦素受体影响小脑浦肯野神经元(PNs)的电生理特性。在小脑切片中记录的(db/db)小鼠的PNs比野生型(WT)小鼠的PNs表现出更高的自发放电动作电位发放频率。用荷包牡丹碱阻断WT小鼠的GABA能紧张性抑制,可使放电模式从持续不间断的尖峰放电转变为爆发性放电,但荷包牡丹碱在db/db神经元中不会产生这些改变,这表明它们接受的GABA能抑制性输入较弱。我们的结果还表明,WT和db/db PNs的内在放电特性(自动节律性)不同。PNs的紧张性放电是小脑皮质唯一的传出输出,是对小脑下游靶点的持续信号。瘦素对PNs自发放电的调节意义尚不清楚。此外,目前尚不清楚db/db小鼠中小脑PNs兴奋性增加是由高血糖还是缺乏瘦素信号引起的,因为这两种情况在db/db品系中同时存在。

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