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Intrinsic spontaneous activity and subthreshold oscillations in neurones of the rat dorsal column nuclei in culture

机译:培养大鼠背柱核神经元的内在自发活动和阈下振荡

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The basis of rhythmic activity observed at the dorsal column nuclei (DCN) is still open to debate. This study has investigated the electrophysiological properties of isolated DCN neurones deprived of any synaptic influence, using the perforated-patch technique. About half of the DCN neurones (64/130) were spontaneously active. More than half of the spontaneous neurones (36/64) showed a low threshold membrane oscillation (LTO) with a mean frequency of 11.4 Hz (range: 4.3–22.1 Hz, n = 20; I = 0). Cells showing LTOs also invariably showed a rhythmic 1.2 Hz clustering activity (groups of 2–5 action potentials separated by silent LTO periods). Also, more than one-third of the silent neurones presented clustering activity, always accompanied by LTOs, when slightly depolarised. The frequency of LTOs was voltage dependent and could be abolished by TTX (0.5 μM) and riluzole (30 μM), suggesting the participation of a sodium current. LTOs were also abolished by TEA (15 mM), which transformed clustering into tonic activity. In voltage clamp, most DCN neurones (85 %) showed a TTX-/riluzole-sensitive persistent sodium current (INa,p), which activated at about -60 mV and had a half-maximum activation at −49.8 mV. An M-like, non-inactivating outward current was present in 95 % of DCN neurones, and TEA (15 mM) inhibited this current by 73.7 %. The non-inactivating outward current was also inhibited by barium (1 mM) and linopirdine (10 μM), which suggests its M-like nature; both drugs failed to block the LTOs, but induced a reduction in their frequency by 56 and 20 %, respectively. These results demonstrate for the first time that DCN neurones have a complex and intrinsically driven clustering discharge pattern, accompanied by subthreshold membrane oscillations. Subthreshold oscillations rely on the interplay of a persistent sodium current and a non-inactivating TEA-sensitive outward current.
机译:在背柱核(DCN)观察到的节律性活动的基础尚有争议。这项研究已经研究了使用穿孔贴片技术分离的任何突触影响的DCN神经元的电生理特性。大约一半的DCN神经元(64/130)自发活跃。超过一半的自发神经元(36/64)表现出低阈值膜振荡(LTO),平均频率为11.4 Hz(范围:4.3–22.1 Hz,n = 20; I = 0)。表现出LTO的细胞也总是表现出有节律的1.2 Hz聚类活动(由静默LTO期隔开的2-5个动作电位组)。而且,当稍微去极化时,超过三分之一的沉默神经元表现出聚集活动,总是伴随着LTO。 LTO的频率取决于电压,可被TTX(0.5μM)和利鲁唑(30μM)废除,表明存在钠电流。 LTO也被TEA(15 mM)废除了,从而将簇转变为滋补活性。在电压钳位中,大多数DCN神经元(85%)显示出对TTX //吡咯唑敏感的持续钠电流(INa,p),该电流在约-60 mV时被激活,在-49.8 mV时有一半的最大激活。 95%的DCN神经元中存在M样的,非灭活的向外电流,而TEA(15 mM)抑制了73.7%的该电流。钡(1 mM)和利诺吡丁(10μM)也抑制了非灭活的向外电流,这表明它具有M样性质。两种药物均未能阻止LTO,但分别导致其频率降低56%和20%。这些结果首次证明DCN神经元具有复杂的,内在驱动的簇状放电模式,并伴有亚阈值膜振动。亚阈值振荡依赖于持续的钠电流和非灭活的TEA敏感向外电流的相互作用。

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