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首页> 外文期刊>Experimental Neurology >Transplants and neurotrophic factors prevent atrophy of mature CNS neurons after spinal cord injury.
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Transplants and neurotrophic factors prevent atrophy of mature CNS neurons after spinal cord injury.

机译:移植和神经营养因子可防止脊髓损伤后成熟的CNS神经元萎缩。

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摘要

Axotomy of mature rubrospinal neurons leads to a substantial atrophy of these neurons within days after surgery. In addition, these neurons do not successfully regenerate following axotomy. The relationship of atrophy to regenerative failure is not clear, and the signals which regulate these events have not been identified. However, it is possible that the atrophy of these neurons plays a role in preventing regeneration. In the present study, we evaluated the hypothesis that interventions which have been shown to promote growth of axotomized CNS neurons are also capable of reversing the axotomy-induced atrophy. To test this hypothesis, adults rats received thoracic spinal cord hemisection alone or in combination with transplants of fetal spinal cord tissue and/or neurotrophic factor support. Our data indicate that application of either transplants or neurotrophic factors partially reverse the axotomy-induced atrophy in rubrospinal neurons, but that both interventions together reverse the atrophy completely. These results suggest that the same pathways that are activated to enhance growth of rubrospinal neurons after axotomy may also be involved in the maintenance of cell morphology.
机译:在成熟的神经脊髓神经元进行轴索切开术后,这些神经元会在术后几天内大量萎缩。另外,这些神经元在轴切术后不能成功再生。萎缩与再生衰竭的关系尚不清楚,并且尚未发现调节这些事件的信号。但是,这些神经元的萎缩可能在阻止再生中起作用。在本研究中,我们评估了一种假设,即已被证明能促进轴突切除的中枢神经元生长的干预措施也能够逆转由轴切术引起的萎缩的假说。为了检验这一假设,成年大鼠单独接受胸脊髓半切术或与胎儿脊髓组织移植和/或神经营养因子支持联合接受。我们的数据表明,移植或神经营养因子的应用部分逆转了轴突切开术引起的脊髓神经元萎缩,但两种干预措施一起完全逆转了萎缩。这些结果表明,在轴突切开术之后被激活以增强rubrospinal神经元生长的相同途径也可能参与细胞形态的维持。

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