首页> 美国卫生研究院文献>Frontiers in Neurology >Expression of Semaphorins Neuropilins VEGF and Tenascins in Rat and Human Primary Sensory Neurons after a Dorsal Root Injury
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Expression of Semaphorins Neuropilins VEGF and Tenascins in Rat and Human Primary Sensory Neurons after a Dorsal Root Injury

机译:背根损伤后大鼠和人原发感觉神经元中信号蛋白神经菌素VEGF和腱生蛋白的表达

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摘要

Dorsal root injury is a situation not expected to be followed by a strong regenerative growth, or growth of the injured axon into the central nervous system of the spinal cord, if the central axon of the dorsal root is injured but of strong regeneration if subjected to injury to the peripherally projecting axons. The clinical consequence of axonal injury is loss of sensation and may also lead to neuropathic pain. In this study, we have used in situ hybridization to examine the distribution of mRNAs for the neural guidance molecules semaphorin 3A (SEMA3A), semaphorin 3F (SEMA3F), and semaphorin 4F (SEMA4F), their receptors neuropilin 1 (NP1) and neuropilin 2 (NP2) but also for the neuropilin ligand vascular endothelial growth factor (VEGF) and Tenascin J1, an extracellular matrix molecule involved in axonal guidance, in rat dorsal root ganglia (DRG) after a unilateral dorsal rhizotomy (DRT) or sciatic nerve transcetion (SNT). The studied survival times were 1–365 days. The different forms of mRNAs were unevenly distributed between the different size classes of sensory nerve cells. The results show that mRNA for SEMA3A was diminished after trauma to the sensory nerve roots in rats. The SEMA3A receptor NP1, and SEMA3F receptor NP2, was significantly upregulated in the DRG neurons after DRT and SNT. SEMA4F was upregulated after a SNT. The expression of mRNA for VEGF in DRG neurons after DRT showed a significant upregulation that was high even a year after the injuries. These data suggest a role for the semaphorins, neuropilins, VEGF, and J1 in the reactions after dorsal root lesions.
机译:如果背根的中央轴突受到了损伤,但是背根损伤是一种强烈的再生生长,或者说受损的轴突生长到脊髓的中枢神经系统中的情况,但是如果经受了这种损伤,这种情况就不会发生。周围突出的轴突受伤。轴突损伤的临床后果是感觉丧失,还可能导致神经性疼痛。在这项研究中,我们已使用原位杂交来检查神经引导分子semaphorin 3A(SEMA3A),semaphorin 3F(SEMA3F)和semaphorin 4F(SEMA4F),它们的受体Neuropilin 1(NP1)和Neuropilin 2的mRNA分布。 (NP2),也用于神经纤维蛋白配体血管内皮生长因子(VEGF)和Tenascin J1,一种参与轴突引导的细胞外基质分子,在大鼠背根神经节(DRG)进行单侧背侧根除术(DRT)或坐骨神经穿刺后( SNT)。研究的生存时间为1–365天。不同形式的感觉神经细胞之间不同形式的mRNA分布不均。结果表明,损伤大鼠感觉神经根后,SEMA3A的mRNA减少。 DRT和SNT后,DRG神经元中的SEMA3A受体NP1和SEMA3F受体NP2明显上调。 SNT后SEMA4F上调。 DRT后DRG神经元中VEGF的mRNA表达显示出明显的上调,​​甚至在受伤一年后仍显着升高。这些数据表明,在背根部病变后,信号量,神经纤毛蛋白,VEGF和J1在反应中起作用。

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