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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Cerebellar input to magnocellular neurons in the red nucleus of the mouse: synaptic analysis in horizontal brain slices incorporating cerebello-rubral pathways.
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Cerebellar input to magnocellular neurons in the red nucleus of the mouse: synaptic analysis in horizontal brain slices incorporating cerebello-rubral pathways.

机译:小脑输入到小鼠红细胞核中的巨细胞神经元:结合小脑-肱骨途径的水平脑切片的突触分析。

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We studied the synaptic input from the nucleus interpositus of the cerebellum to the magnocellular division of the red nucleus (RNm) in the mouse using combined electrophysiological and neuroanatomical methods. Whole-cell patch-clamp recordings were made from brain slices (125-150 microm) cut in a horizontal plane oriented to pass through both red nucleus and nucleus interpositus. Large cells that were visually selected and patched were injected with Lucifer Yellow and identified as RNm neurons. Using anterograde tracing from nucleus interpositus in vitro, we examined the course of interposito-rubral axons which are dispersed in the superior cerebellar peduncle. In vitro monosynaptic responses in RNm were elicited by an electrode array placed contralaterally in this pathway but near the midline. Mixed excitatory post-synaptic potentials (EPSPs)/inhibitory post-synaptic potentials (IPSPs) were observed in 48 RNm neurons. Excitatory components of the evoked potentials were studied after blocking inhibitory components with picrotoxin (100 microM) and strychnine (5 microM). All RNm neurons examined continued to show monosynaptic EPSPs after non-N-methyl-D-aspartate (NMDA) glutamate receptor components were blocked with 10 microM 6,7-dinitroquinoxaline-2,3-dione or 5 microM 2,3-dihydro-6-nitro-7-sulfamoyl-benzo(f)-quinoxaline (NBQX; n=12). The residual potentials were identified as NMDA receptor components since they (i) were blocked by the addition of the NMDA receptor antagonist, D,L-2-amino-5-phosphonovaleric acid (APV), (ii) were voltage-dependent, and (iii) were enhanced by Mg(2+) removal. Inhibitory components of the evoked potentials were studied after blocking excitatory components with NBQX and APV. Under these conditions, all RNm neurons studied continued to show IPSPs. Blockade of GABA(A) receptors reduced but did not eliminate the IPSPs. These were eliminated when GABA(A) receptor blockade was combined with strychnine to eliminate glycine components of the IPSPs. Thus, IPSPs evoked by midline stimulation of the superior cerebellar peduncle, while blocking alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid (AMPA) and NMDA receptors, raise the possibility of direct inhibitory inputs to RNm from the cerebellum.In summary we propose that the special properties of the NMDA receptor components are considered important for the generation of RNm motor commands: their slow time course will contribute a steady driving force for sustained discharge and their voltage dependency will facilitate abrupt transitions from a resting state of quiescence to an active state of intense motor command generation.
机译:我们使用组合的电生理学和神经解剖学方法研究了小鼠小脑核间突触输入到红色核(RNm)的大细胞分裂。全细胞膜片钳记录是从脑片(125-150微米)中进行的,该脑片在水平方向上切开以穿过红色核和中间核。在视觉上选择并修补的大细胞注射路西法黄,并鉴定为RNm神经元。使用从中间核体外顺行示踪,我们检查了分散在上小脑梗的额间rub轴突的过程。 RNm中的体外单突触反应是通过在该途径中对侧但在中线附近放置的电极阵列引起的。在48个RNm神经元中观察到混合的兴奋性突触后电位(EPSPs)/抑制性突触后电位(IPSPs)。在用微毒素(100 microM)和士的宁(5 microM)阻断抑制性成分后,研究诱发电位的兴奋性成分。非N-甲基-D-天冬氨酸(NMDA)谷氨酸受体组件被10 microM 6,7-dinitroquinoxaline-2,3-dione或5 microM 2,3-dihydro-N阻断后,所有检查的RNm神经元继续显示单突触EPSP。 6-硝基-7-氨磺酰基-苯并(f)-喹喔啉(NBQX; n = 12)。残余电位被识别为NMDA受体组分,因为它们(i)被NMDA受体拮抗剂的添加所阻断,D,L-2-氨基-5-膦酰戊酸(APV),(ii)与电压有关,并且(iii)通过去除Mg(2+)得以增强。在用NBQX和APV阻断兴奋性成分后,研究了诱发电位的抑制性成分。在这些条件下,所有研究的RNm神经元继续显示IPSP。 GABA(A)受体的阻滞减少,但并未消除IPSP。当GABA(A)受体阻滞剂与士的宁联用以消除IPSP的甘氨酸成分时,这些物质就被消除了。因此,中线刺激上小脑梗引起的IPSPs,在阻断α-氨基-3-羟基-5-羟甲基异恶唑-4-丙酸(AMPA)和NMDA受体的同时,增加了直接抑制小脑向RNm输入的可能性。总而言之,我们认为NMDA受体组件的特殊性质对于生成RNm电机命令很重要:它们的慢速运行过程将为持续放电提供稳定的驱动力,并且它们的电压依赖性将有助于从静止状态突然过渡静止到强烈的运动命令生成的活动状态。

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