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去极化对培养的小龙虾紧张性和相位性运动轴突生长的不同影响。

Differential effects of depolarization on the growth of crayfish tonic and phasic motor axons in culture.

作者信息

Arcaro K F, Lnenicka G A

机构信息

Neurobiology Research Center, Department of Biological Sciences, University at Albany, SUNY, New York 12222, USA.

出版信息

J Neurobiol. 1997 Jul;33(1):85-97.

PMID:9212072
Abstract

Previous studies have demonstrated neuron-specific differences in the inhibitory effects of depolarization upon neurite outgrowth. We examined whether there is a relationship between the normal impulse activity level of an axon and the effect of depolarization upon its growth. Inactive phasic motor axons and active tonic motor axons grow from crayfish abdominal nerve cord explants in culture. Depolarization of these axons with high K solutions produced greater inhibition of advancing growth cones from the phasic axons than from the tonic axons. During the period 20-40 min after the beginning of depolarization, tonic axon growth cones continued to advance, whereas phasic axon growth cones retracted. During chronic depolarization, all of the phasic axons retracted during the first day and approximately half of the phasic axons had degenerated after 4 days of depolarization. The majority of tonic axons continue to grow after 3 days of depolarization, and all of the tonic axon growth survived the 4 days of depolarization. The different responses of the growing phasic and tonic axons to depolarization appear to be Ca2+ dependent. The inhibitory effects of depolarization upon phasic axon growth were reduced by the Ca2+ channel blockers La3+ and Mg2+. Application of a Ca2+ ionophore, A23187, produces greater inhibition of phasic axon growth than tonic axon growth. This study demonstrates that depolarization produces greater inhibition of growth from inactive motor axons than from active motor axons. This is likely due to differences in Ca2+ regulation and/or sensitivity to intracellular Ca2+.

摘要

先前的研究已经证明,去极化对神经突生长的抑制作用存在神经元特异性差异。我们研究了轴突的正常冲动活动水平与去极化对其生长的影响之间是否存在关联。在培养的小龙虾腹神经索外植体中,无活动的相位性运动轴突和有活动的紧张性运动轴突会生长。用高钾溶液使这些轴突去极化,与紧张性轴突相比,相位性轴突的生长锥前进受到的抑制更大。在去极化开始后的20 - 40分钟内,紧张性轴突生长锥继续前进,而相位性轴突生长锥则回缩。在慢性去极化期间,所有相位性轴突在第一天就回缩,去极化4天后约一半的相位性轴突发生退化。大多数紧张性轴突在去极化3天后继续生长,并且所有紧张性轴突的生长在去极化4天后仍存活。正在生长的相位性和紧张性轴突对去极化的不同反应似乎依赖于Ca2+。Ca2+通道阻滞剂La3+和Mg2+可降低去极化对相位性轴突生长的抑制作用。应用Ca2+离子载体A23187对相位性轴突生长的抑制作用比对紧张性轴突生长的抑制作用更大。这项研究表明,去极化对无活动的运动轴突生长的抑制作用比对有活动的运动轴突更大。这可能是由于Ca2+调节和/或对细胞内Ca2+敏感性的差异所致。

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