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中枢神经系统修复中的神经生长因子。

Nerve growth factor in CNS repair.

作者信息

Varon S, Conner J M

机构信息

Department of Biology, School of Medicine, University of California, San Diego, La Jolla.

出版信息

J Neurotrauma. 1994 Oct;11(5):473-86. doi: 10.1089/neu.1994.11.473.

Abstract

The hypothesis that neurotrophic factors play important roles in the adult central nervous system (CNS) has been successfully investigated in the past decade with regard to experimental and pathologic situations. Trophic roles in adult CNS axonal regeneration, on the other hand, have received much less attention. We review three groups of recent studies that demonstrate the relevance of nerve growth factor (NGF) for the regeneration of selected axons into adult central nervous tissue. The first group concerns a septohippocampal model where transected septal cholinergic axons are allowed to regrow into the hippocampal formation through a peripheral nerve bridge implanted into the transection lesion gap. NGF is required in the bridge, enhances penetration of the hippocampal tissue when infused there, and both attracts and promotes sprouting within the septum when infused in the lateral ventricle or the septal tissue itself. The second group of studies concerns the development of a spinal cord sensory regeneration model, where dorsal root ganglionic axons regrow into a nerve bridge placed within the dorsal spinal cord. Preliminary data indicate that NGF infusion rostral to the bridge once again promotes substantial penetration of the adult cord tissue by the regenerating NGF-sensitive fibers. In the third group of studies, attention has been shifted to the location of endogenous NGF in the adult rat hippocampal formation and the normal or lesion-induced occurrence of extrasomal NGF immunoreactivity. These regions of anchored NGF have the ability to attract NGF-sensitive growing axons and may provide opportunities to investigate local cues for final definition of terminal fields.

摘要

在过去十年中,关于神经营养因子在成体中枢神经系统(CNS)中发挥重要作用的假说,已在实验和病理情况下得到了成功研究。另一方面,神经营养因子在成体CNS轴突再生中的作用却很少受到关注。我们回顾了最近的三组研究,这些研究证明了神经生长因子(NGF)与选定轴突向成体中枢神经组织再生的相关性。第一组研究涉及一个隔海马模型,在该模型中,横断的隔区胆碱能轴突通过植入横断损伤间隙的周围神经桥向海马结构生长。神经桥中需要NGF,当将其注入海马组织时可增强对海马组织的穿透,而当注入侧脑室或隔区组织本身时,它既能吸引又能促进隔区内的轴突发芽。第二组研究涉及脊髓感觉再生模型的建立,在该模型中,背根神经节轴突向置于脊髓背侧的神经桥生长。初步数据表明,在神经桥的头侧注入NGF再次促进了对再生的NGF敏感纤维对成体脊髓组织的大量穿透。在第三组研究中,注意力已转向成年大鼠海马结构中内源性NGF的定位以及额外体NGF免疫反应性的正常或损伤诱导情况。这些固定有NGF的区域有能力吸引对NGF敏感的生长轴突,并可能为研究终末场最终定义的局部线索提供机会。

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