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腺病毒载体介导的基因传递至损伤大鼠周围神经。

Adenoviral vector-mediated gene delivery to injured rat peripheral nerve.

作者信息

Dijkhuizen P A, Pasterkamp R J, Hermens W T, de Winter F, Giger R J, Verhaagen J

机构信息

Graduate School for the Neurosciences, Netherlands Institute for Brain Research, Amsterdam, The Netherlands.

出版信息

J Neurotrauma. 1998 Jun;15(6):387-97. doi: 10.1089/neu.1998.15.387.

Abstract

Although much progress has been made, current treatments of peripheral nerve damage mostly result in only partial recovery. Local production of neurite outgrowth-promoting molecules, such as neurotrophins and/or cell adhesion molecules, at the site of damage may be used as a new means to promote the regeneration process. We have now explored the ability of an adenoviral vector encoding the reporter gene LacZ (Ad-LacZ) to direct the expression of a foreign gene to Schwann cells of intact and crushed rat sciatic nerves. Infusion of 8 x 10(7) PFU Ad-LacZ in the intact sciatic nerve resulted in the transduction of many Schwann cells with high levels of transgene expression lasting at least up to 12 days following viral vector administration. The efficacy of adenoviral vector delivery to a crushed nerve was investigated using three strategies. Injection of the adenoviral vector at the time of, or immediately after, a crush resulted in the transduction of only a few Schwann cells. Administration of the adenoviral vector the day after the crush resulted in the transduction of a similar number of Schwann cells 5 days after administration, as observed in uncrushed nerves. Regenerating nerve fibers were closely associated with beta-galactosidase-positive Schwann cells, indicating that the capacity of transduced Schwann cells to guide regenerating fibers was not altered. These results imply that the expression of growth-promoting proteins through adenoviral vector-mediated gene transfer may be a realistic option to promote peripheral nerve regeneration.

摘要

尽管已经取得了很大进展,但目前对外周神经损伤的治疗大多只能实现部分恢复。在损伤部位局部产生促进神经突生长的分子,如神经营养因子和/或细胞粘附分子,可能作为促进再生过程的一种新方法。我们现在研究了编码报告基因LacZ的腺病毒载体(Ad-LacZ)将外源基因定向表达至完整和挤压损伤的大鼠坐骨神经雪旺细胞的能力。向完整坐骨神经中注入8×10⁷ PFU的Ad-LacZ,导致许多雪旺细胞转导,转基因高水平表达至少持续至病毒载体给药后12天。使用三种策略研究了腺病毒载体递送至挤压损伤神经的效果。在挤压时或挤压后立即注射腺病毒载体,仅导致少数雪旺细胞转导。挤压损伤后一天给予腺病毒载体,给药5天后转导的雪旺细胞数量与未挤压神经中观察到的相似。再生神经纤维与β-半乳糖苷酶阳性雪旺细胞紧密相关,表明转导的雪旺细胞引导再生纤维的能力未改变。这些结果表明,通过腺病毒载体介导的基因转移表达促进生长的蛋白可能是促进外周神经再生的一个现实选择。

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