首页> 美国卫生研究院文献>The Journal of Neuroscience >Up and Down States in Striatal Medium Spiny Neurons Simultaneously Recorded with Spontaneous Activity in Fast-Spiking Interneurons Studied in Cortex–Striatum–Substantia Nigra Organotypic Cultures
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Up and Down States in Striatal Medium Spiny Neurons Simultaneously Recorded with Spontaneous Activity in Fast-Spiking Interneurons Studied in Cortex–Striatum–Substantia Nigra Organotypic Cultures

机译:皮层-纹状体-黑质器官型文化研究中快速记录的中间神经元自发活动同时记录的纹状体中棘神经元的上下状态

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摘要

In vivo intracellular spontaneous activity in striatal medium spiny (MS) projection neurons is characterized by “up” and “down” states. How this type of activity relates to the neuronal activity of striatal fast-spiking (FS) interneurons was examined in the presence of nigral and cortical inputs using cortex–striatum–substantia nigra organotypic cultures grown for 45 ± 4 d. The nigrostriatal projection was confirmed by tyrosine hydroxylase immunoreactivity. Corticostriatal (CS) projection neurons, striatal MS neurons, and FS neurons were intracellularly recorded and morphologically and electrophysiologically characterized. Intracellular spontaneous activity in the cultures consisted of intermittent depolarized periods of 0.5–1 sec duration. Spontaneous depolarizations in MS neurons were restricted to a narrow membrane potential range (up state) during which they occasionally fired single spikes. These up states were completely blocked by the glutamate antagonist CNQX. In FS interneurons, depolarized periods were characterized by large membrane potential fluctuations that occupied a wide range between rest and spike threshold. Also, FS interneurons spontaneously fired at much higher rates than did MS neurons. Simultaneous intracellular recordings established that during spontaneous depolarizations MS neurons and FS interneurons displayed correlated subthreshold neuronal activity in the low frequency range. These results indicate that (1) the CS projection neurons, striatal MS neurons, and FS interneurons grown in cortex–striatum–substantia nigra organotypic cultures show morphological and electrophysiological characteristics similar to those seen in vivo; (2) striatal MS neurons but not FS interneurons show an up state; (3) striatal MS neurons and FS interneurons receive common, presumably cortical inputs in the low frequency range. Our results support the view that the cortex provides a feedforward inhibition of MS neuron activity during the up state via FS interneurons.
机译:纹状体中棘(MS)投射神经元的体内细胞内自发活动的特征是“向上”和“向下”状态。在皮质和纹状体-黑质组织培养45±4 d的条件下,在有黑色和皮质输入的情况下,检查了这种活动与纹状体快速加标(FS)中神经元神经元活动的关系。酪氨酸羟化酶免疫反应证实了黑质纹状体的投射。皮质口(CS)投射神经元,纹状体MS神经元和FS神经元的细胞内记录和形态和电生理学特征。培养物中的细胞内自发活性包括0.5-1秒持续时间的间歇性去极化周期。 MS神经元的自发去极化被限制在一个狭窄的膜电位范围(向上状态),在此期间它们偶尔会发射单个尖峰。这些上升状态被谷氨酸拮抗剂CNQX完全阻断。在FS中间神经元中,去极化期的特征是较大的膜电势波动,占据了静止和峰值阈值之间的较大范围。同样,FS中间神经元自发激发的频率比MS神经元高。同时的细胞内记录表明,在自发去极化过程中,MS神经元和FS间神经元在低频范围内显示了相关的亚阈下神经元活性。这些结果表明:(1)在皮层-纹状体-黑质器官型培养物中生长的CS投射神经元,纹状体MS神经元和FS间神经元显示出与体内相似的形态和电生理特征; (2)纹状体MS神经元而不是FS中神经元显示出上升状态; (3)纹状体MS神经元和FS中间神经元在低频范围内接收常见的大概是皮质输入。我们的结果支持这样的观点,即皮层通过FS间神经元提供了前向抑制MS神经元活动的作用。

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