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运动神经元损伤与修复:性腺甾体作为神经治疗药物的新观点。

Motoneuron injury and repair: New perspectives on gonadal steroids as neurotherapeutics.

作者信息

Tetzlaff Julie E, Huppenbauer Christopher B, Tanzer Lisa, Alexander Thomas D, Jones Kathryn J

机构信息

Department of Cell Biology, Neurobiology, and Anatomy, Loyola University of Chicago, Stritch School of Medicine, Maywood, IL 60153, USA.

出版信息

J Mol Neurosci. 2006;28(1):53-64. doi: 10.1385/jmn:28:1:53.

Abstract

In this review, we will summarize recent work from our laboratory on the role of gonadal steroids as neuroprotective agents in motoneuron viability following cell stress. Three motoneuron models will be discussed: developing axotomized hamster facial motoneurons (FMNs); adult axotomized mouse FMNs; and immortalized, cultured mouse spinal motoneurons subjected to heat shock. New work on two relevant motoneuron proteins, the survival of motor neuron protein, and neuritin or candidate plasticity-related gene 15, indicates differential steroid regulation of these two proteins after axotomy. The concept of gonadal steroids as cellular stress correction factors and the implications of this for acute neurological injury situations will be presented as well.

摘要

在本综述中,我们将总结我们实验室最近关于性腺类固醇在细胞应激后作为运动神经元存活神经保护剂的作用的研究工作。将讨论三种运动神经元模型:发育中的切断轴突的仓鼠面部运动神经元(FMNs);成年切断轴突的小鼠FMNs;以及经热休克处理的永生化培养小鼠脊髓运动神经元。关于两种相关运动神经元蛋白,即运动神经元存活蛋白和神经素或候选可塑性相关基因15的新研究表明,轴突切断后这两种蛋白受类固醇的调节存在差异。还将介绍性腺类固醇作为细胞应激校正因子的概念及其对急性神经损伤情况的影响。

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