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神经营养因子-3对损伤后背根移行区的影响。

The impact of neurotrophin-3 on the dorsal root transitional zone following injury.

作者信息

Hanna-Mitchell A T, O'Leary D, Mobarak M S, Ramer M S, McMahon S B, Priestley J V, Kozlova E N, Aldskogius H, Dockery P, Fraher J P

机构信息

Department of Anatomy/Neuroscience, BioSciences Institute, National University of Ireland, Cork, Ireland.

出版信息

Spinal Cord. 2008 Dec;46(12):804-10. doi: 10.1038/sc.2008.57. Epub 2008 Jun 10.

Abstract

STUDY DESIGN

Morphological and Stereological assessment of the dorsal root transitional zone (DRTZ) following complete crush injury, using light microscopy (LM) and transmission electron microscopy (TEM).

OBJECTIVES

To assess the effect of exogenous neurotrophin-3 (NT-3) on the response of glial cells and axons to dorsal root damage.

SETTING

Department of Anatomy, University College Cork, Ireland and Department of Physiology, UMDS, University of London, UK.

METHODS

Cervical roots (C6-8) from rats which had undergone dorsal root crush axotomy 1 week earlier, in the presence (n=3) and absence (n=3) of NT-3, were processed for LM and TEM.

RESULTS

Unmyelinated axon number and size was greater in the DRTZ proximal (Central Nervous System; CNS) and distal (Peripheral Nervous System; PNS) compartments of NT-3-treated tissue. NT-3 was associated with a reduced astrocytic response, an increase in the proportion of oligodendrocytic tissue and a possible inhibition or delay of microglial activation. Disrupted-myelin volume in the DRTZ PNS and CNS compartments of treated tissue was lower, than in control tissue. In the PNS compartment, NT-3 treatment increased phagocyte and blood vessel numbers. It decreased myelinating activity, as sheath thickness was significantly lower and may also account for the noted lower Schwann cell and organelle volume in the test group.

CONCLUSIONS

Our observations suggest that NT-3 interacts with non-neuronal tissue to facilitate the regenerative effort of damaged axons. This may be as a consequence of a direct action or indirectly mediated by modulation of non-neuronal responses to injury.

摘要

研究设计

采用光学显微镜(LM)和透射电子显微镜(TEM)对完全挤压伤后背根过渡区(DRTZ)进行形态学和体视学评估。

目的

评估外源性神经营养因子-3(NT-3)对神经胶质细胞和轴突对背根损伤反应的影响。

研究地点

爱尔兰科克大学学院解剖学系和英国伦敦大学医学与牙科学院生理学系。

方法

对1周前接受背根挤压切断术的大鼠的颈神经根(C6-8),在有(n = 3)和无(n = 3)NT-3的情况下进行LM和TEM处理。

结果

在NT-3处理组织的DRTZ近端(中枢神经系统;CNS)和远端(周围神经系统;PNS)区域,无髓轴突数量和大小更大。NT-3与星形细胞反应减少、少突胶质细胞组织比例增加以及小胶质细胞激活可能受到抑制或延迟有关。处理组织的DRTZ PNS和CNS区域中破坏的髓鞘体积低于对照组织。在PNS区域,NT-3处理增加了吞噬细胞数量和血管数量。它降低了髓鞘形成活性,因为髓鞘厚度显著降低,这也可能是试验组中施万细胞和细胞器体积较低的原因。

结论

我们的观察结果表明,NT-3与非神经组织相互作用,以促进受损轴突的再生。这可能是直接作用的结果,也可能是通过调节非神经组织对损伤的反应间接介导的。

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