Suppr超能文献

晚期糖基化终末产物受体通过募集炎症和轴突生长途径来调节周围神经再生。

RAGE modulates peripheral nerve regeneration via recruitment of both inflammatory and axonal outgrowth pathways.

作者信息

Rong Ling Ling, Yan Shi-Fang, Wendt Thoralf, Hans Diana, Pachydaki Sophia, Bucciarelli Loredana G, Adebayo Adebukola, Qu Wu, Lu Yan, Kostov Konstantin, Lalla Evanthia, Yan Shi Du, Gooch Clifton, Szabolcs Matthias, Trojaborg Werner, Hays Arthur P, Schmidt Ann Marie

机构信息

Departments of Surgery, College of Physicians & Surgeons, Columbia University, New York, New York 10032, USA.

出版信息

FASEB J. 2004 Dec;18(15):1818-25. doi: 10.1096/fj.04-1900com.

Abstract

Axotomy of peripheral nerve stimulates events in multiple cell types that initiate a limited inflammatory response to axonal degeneration and simultaneous outgrowth of neurites into the distal segments after injury. We found that pharmacological blockade of RAGE impaired peripheral nerve regeneration in mice subjected to RAGE blockade and acute crush of the sciatic nerve. As our studies revealed that RAGE was expressed in axons and in infiltrating mononuclear phagocytes upon injury, we tested the role of RAGE in these distinct cell types on nerve regeneration. Transgenic mice expressing signal transduction-deficient RAGE in mononuclear phagocytes or peripheral neurons were generated and subjected to unilateral crush injury to the sciatic nerve. Transgenic mice displayed decreased functional and morphological recovery compared with littermate controls, as assessed by motor and sensory conduction velocities; and myelinated fiber density. In double transgenic mice expressing signal transduction deficient RAGE in both mononuclear phagocytes and peripheral neurons, regeneration was even further impaired, suggesting the critical interplay between RAGE-modulated inflammation and neurite outgrowth in nerve repair. These findings suggest that RAGE signaling in inflammatory cells and peripheral neurons plays an important role in plasticity of the peripheral nervous system.

摘要

外周神经切断术会刺激多种细胞类型中的一系列事件,这些事件会引发对轴突退化的有限炎症反应,并在损伤后同时使神经突向远端节段生长。我们发现,在接受RAGE阻断和坐骨神经急性挤压的小鼠中,RAGE的药理学阻断会损害外周神经再生。由于我们的研究表明,损伤后RAGE在轴突和浸润的单核吞噬细胞中表达,我们测试了RAGE在这些不同细胞类型中对神经再生的作用。我们构建了在单核吞噬细胞或外周神经元中表达信号转导缺陷型RAGE的转基因小鼠,并对其坐骨神经进行单侧挤压损伤。通过运动和感觉传导速度以及有髓纤维密度评估,与同窝对照相比,转基因小鼠的功能和形态恢复均降低。在单核吞噬细胞和外周神经元中均表达信号转导缺陷型RAGE的双转基因小鼠中,再生进一步受损,这表明RAGE调节的炎症与神经突生长在神经修复中存在关键的相互作用。这些发现表明,炎症细胞和外周神经元中的RAGE信号在外周神经系统的可塑性中起重要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验