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动作电位在轴突传导中的调制。

Action-potential modulation during axonal conduction.

机构信息

Laboratory of Chemical Pharmacology, Graduate School of Pharmaceutical Sciences, University of Tokyo, Tokyo 113-0033, Japan.

出版信息

Science. 2011 Feb 4;331(6017):599-601. doi: 10.1126/science.1197598.

Abstract

Once initiated near the soma, an action potential (AP) is thought to propagate autoregeneratively and distribute uniformly over axonal arbors. We challenge this classic view by showing that APs are subject to waveform modulation while they travel down axons. Using fluorescent patch-clamp pipettes, we recorded APs from axon branches of hippocampal CA3 pyramidal neurons ex vivo. The waveforms of axonal APs increased in width in response to the local application of glutamate and an adenosine A(1) receptor antagonist to the axon shafts, but not to other unrelated axon branches. Uncaging of calcium in periaxonal astrocytes caused AP broadening through ionotropic glutamate receptor activation. The broadened APs triggered larger calcium elevations in presynaptic boutons and facilitated synaptic transmission to postsynaptic neurons. This local AP modification may enable axonal computation through the geometry of axon wiring.

摘要

一旦在神经元胞体附近起始,动作电位(AP)被认为能够自动再生并在轴突树突上均匀传播。我们通过展示在轴突下行过程中,AP 会发生波形调制,从而对这一经典观点提出了挑战。我们使用荧光膜片钳微电极从海马 CA3 锥体神经元的轴突分支上进行记录。在轴突主干局部施加谷氨酸和腺苷 A1 受体拮抗剂会导致轴突 AP 的波形增宽,但对其他不相关的轴突分支没有影响。在周细胞星形胶质细胞中钙的光解会通过离子型谷氨酸受体的激活引起 AP 增宽。增宽的 AP 通过激活离子型谷氨酸受体引起更大的钙内流,并促进突触后神经元的突触传递。这种局部 AP 修饰可以通过轴突布线的几何形状来实现轴突计算。

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