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重组睫状神经营养因子促进成年大鼠硅管桥接切断坐骨神经的神经再生并诱导基因表达。

Recombinant ciliary neurotrophic factor promotes nerve regeneration and induces gene expression in silicon tube-bridged transected sciatic nerves in adult rats.

作者信息

Xu Jia-jun, Chen Er-yu, Lu Chang-lin, He Cheng

机构信息

Department of Anatomy, Second Military Medical University, 800 Xiangyin Road, Shanghai 200433, China.

出版信息

J Clin Neurosci. 2009 Jun;16(6):812-7. doi: 10.1016/j.jocn.2008.08.035. Epub 2009 Mar 16.

Abstract

Sciatic nerves in adult male rats were transected and reunited via a silicone chamber. This was followed by a focal injection of recombinant ciliary neurotrophic factor (CNTF). To evaluate the effect of this therapeutic approach and to explore its possible mechanisms, nerve regeneration was traced by horseradish peroxidase retrograde labeling. Functional recovery was evaluated by functional assessment of the hind feet and the expression of a number of proteins was detected using immunohistochemistry. The results showed that a single administration of CNTF could promote regeneration of motor axons, with improved functional recovery in adult rats. Growth associated protein (GAP)-43, S100, CD68 and major histocompatibility complex class II immunoreactivity in the regenerative and distal nerves suggested that CNTF could promote axon regeneration, Schwann cell migration, monocyte infiltration and activation. CNTF might also indirectly promote axonal regeneration by further activating the JAK-STAT3 pathway and subsequently upregulating phosphotyrosine, GAP-43 and S100 expression to enhance proliferation, growth and migration of Schwann cells. CNTF has suggested important targets for pharmacological intervention in peripheral nerve disease and injury.

摘要

成年雄性大鼠的坐骨神经被切断,并通过硅胶室进行重新连接。随后进行重组睫状神经营养因子(CNTF)的局部注射。为了评估这种治疗方法的效果并探索其可能的机制,采用辣根过氧化物酶逆行标记法追踪神经再生。通过后肢功能评估来评价功能恢复情况,并使用免疫组织化学检测多种蛋白质的表达。结果表明,单次给予CNTF可促进成年大鼠运动轴突的再生,改善功能恢复。再生神经和远端神经中生长相关蛋白(GAP)-43、S100、CD68和主要组织相容性复合体II类的免疫反应性表明,CNTF可促进轴突再生、雪旺细胞迁移、单核细胞浸润和激活。CNTF还可能通过进一步激活JAK-STAT3通路,随后上调磷酸酪氨酸、GAP-43和S100的表达,以增强雪旺细胞的增殖、生长和迁移,从而间接促进轴突再生。CNTF为周围神经疾病和损伤的药物干预提供了重要靶点。

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