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中枢神经系统培养物中去极化诱导损伤后神经丝蛋白丢失的时间进程。

Time course of neurofilament protein loss following depolarization-induced injury in CNS culture.

作者信息

Whitson J S, Kampfl A, Zhao X, Hayes R L

机构信息

Department of Neurosurgery, University of Texas Houston Health Science Center, Houston 77030, USA.

出版信息

Neurosci Lett. 1995 Sep 8;197(2):159-63. doi: 10.1016/0304-3940(95)11921-i.

Abstract

In septo-hippocampal cell cultures, brief potassium depolarization produces calcium-dependent decreases in neurofilament proteins and loss of fine neuritic processes within 24 h. It is not known whether neurons later exhibit delayed degeneration and die, live with enduring neurofilament loss, or restore neurofilament protein levels. Therefore, we exposed septohippocampal cultures to 6 min potassium depolarization (60 mM) with 2.8-11.8 mM extracellular Ca2+ and evaluated immunoreactivity for low, medium and heavy neurofilament proteins, neuronal number, and neuronal morphology for 10 days. Neuronal number remained unchanged; neurofilament protein levels recovered to between 31% and 99% of control levels, and fine neuritic processes reappeared.

摘要

在隔区-海马细胞培养物中,短暂的钾离子去极化会在24小时内导致神经丝蛋白依赖钙的减少以及细神经突的丧失。尚不清楚神经元随后是否会出现延迟性变性并死亡、在神经丝持续丧失的情况下存活,还是恢复神经丝蛋白水平。因此,我们将隔区-海马培养物暴露于含有2.8 - 11.8 mM细胞外Ca2+的6分钟钾离子去极化(60 mM)环境中,并在10天内评估低、中、重神经丝蛋白的免疫反应性、神经元数量和神经元形态。神经元数量保持不变;神经丝蛋白水平恢复到对照水平的31%至99%之间,并且细神经突重新出现。

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