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阳离子通道对神经突形态的控制。

Cation channel control of neurite morphology.

作者信息

Heng J E, Zurakowski D, Vorwerk C K, Grosskreutz C L, Dreyer E B

机构信息

Department of Ophthalmology, University of Pennsylvania, 51 North 39th Street, Philadelphia, PA 19104, USA.

出版信息

Brain Res Dev Brain Res. 1999 Mar 12;113(1-2):67-73. doi: 10.1016/s0165-3806(98)00191-6.

Abstract

The development of neuronal polarity and morphology is essential for a functioning nervous system. The present study was undertaken to explore whether blockade of specific channels alter neuronal morphology. Retinal ganglion cells were cultured in the presence of antagonists to NMDA, AMPA/kainate, L-, N-, P-, and Q-type voltage-dependent calcium channels (VDCCs). Five parameters were measured under these conditions: the number of neurites at the cell body, total neurite length, the length of the longest neurite, the number of branch points per neurite, and the diameter of the cell soma. Antagonists to NMDA and L-type VDCCs reduce the number of neurites at the cell body; antagonists to P- and Q-type VDCCs increase the number of neurites. Antagonists to the N-type VDCCs increase total neurite outgrowth, while antagonists to the NMDA and P-type channels reduce total neurite length. Antagonists to the NMDA and L-type channels increase the length of a single neurite, while decreasing the number of branch points; antagonists to the P- and Q-type VDCCs do essentially the opposite-increase the number of neurites, while decreasing the length of each. Blockade of one or more cation channels in developing retinal ganglion cells significantly perturbs neurite morphology. This study may help elucidate part of the role that cation channel signaling plays in neuritic development.

摘要

神经元极性和形态的发育对于正常运作的神经系统至关重要。本研究旨在探讨阻断特定通道是否会改变神经元形态。视网膜神经节细胞在存在NMDA、AMPA/海人酸、L型、N型、P型和Q型电压依赖性钙通道(VDCCs)拮抗剂的情况下进行培养。在这些条件下测量了五个参数:细胞体处的神经突数量、总神经突长度、最长神经突的长度、每个神经突的分支点数量以及细胞体的直径。NMDA和L型VDCCs的拮抗剂减少了细胞体处的神经突数量;P型和Q型VDCCs的拮抗剂增加了神经突数量。N型VDCCs的拮抗剂增加了总神经突生长,而NMDA和P型通道的拮抗剂减少了总神经突长度。NMDA和L型通道的拮抗剂增加了单个神经突的长度,同时减少了分支点数量;P型和Q型VDCCs的拮抗剂则基本相反——增加了神经突数量,同时减少了每个神经突的长度。阻断发育中的视网膜神经节细胞中的一个或多个阳离子通道会显著扰乱神经突形态。本研究可能有助于阐明阳离子通道信号在神经突发育中所起作用的部分机制。

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