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用于修复脊髓的直接基因治疗。

Direct gene therapy for repair of the spinal cord.

作者信息

Blits Bas, Bunge Mary Bartlett

机构信息

The Miami Project to Cure Paralysis, University of Miami Miller School of Medicine, Miami, Florida 33101, USA.

出版信息

J Neurotrauma. 2006 Mar-Apr;23(3-4):508-20. doi: 10.1089/neu.2006.23.508.

Abstract

For regrowth of injured nerve fibers following spinal cord injury (SCI), the environment must be favorable for axonal growth. The delivery of a therapeutic gene, beneficial for axonal growth, into the central nervous system for repair can be accomplished in many ways. Perhaps the most simple and elegant strategy is the so-called direct gene therapy approach that uses a single injection for delivery of a gene therapy vehicle. Among the vectors that have been used to transduce neural tissue in vivo are non-viral, herpes simplex viral, adeno-associated viral, adenoviral, and lentiviral vectors, each with their own merits and limitations. Many studies have been undertaken using direct gene therapy, ranging from strategies for neuroprotection to axonal growth promotion at the injury site, dorsal root injury repair, and initiation of a growth-supporting genetic program. The limitations and successes of direct gene transfer for spinal cord repair are discussed in this review.

摘要

对于脊髓损伤(SCI)后受损神经纤维的再生,环境必须有利于轴突生长。将对轴突生长有益的治疗性基因导入中枢神经系统以进行修复可以通过多种方式实现。也许最简单且最巧妙的策略就是所谓的直接基因治疗方法,即通过单次注射来递送基因治疗载体。在已用于体内转导神经组织的载体中,有非病毒载体、单纯疱疹病毒载体、腺相关病毒载体、腺病毒载体和慢病毒载体,每种载体都有其自身的优缺点。已经开展了许多使用直接基因治疗的研究,范围涵盖从神经保护策略到损伤部位轴突生长促进、背根损伤修复以及启动生长支持性遗传程序等方面。本综述讨论了脊髓修复直接基因转移的局限性和成功之处。

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