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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The purine nucleosides adenosine and guanosine delay axonal degeneration in vitro.
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The purine nucleosides adenosine and guanosine delay axonal degeneration in vitro.

机译:嘌呤核苷腺苷和鸟苷可延缓体外轴突变性。

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Axonal degeneration is a key component of many neurodegenerative diseases. Injured axons undergo a program of self-destruction termed Wallerian degeneration that is an active, well-regulated process. The pathways leading to axon fragmentation are uncharacterized, but experiments with wld(s) mutant mice led to the discovery that over-expression of NMN adenylyltransferase 1 or treatment with NAD(+) can inhibit axonal degeneration. In this study, we show that the purine nucleosides adenosine and guanosine, but not inosine, inhibit injury-induced axonal degeneration in cultured dorsal root ganglia neurons. Axons can be preserved by adding adenosine within 6 h of the axonal injury. The presence of adenosine was required continuously after the injury to maintain axonal protection. Together these results suggest that adenosine does not alter the neuronal response to injury, but instead inhibits a local axonal pathway necessary for the commitment and/or execution of the axon destructive program.
机译:轴突变性是许多神经退行性疾病的关键组成部分。受伤的轴突经历了称为瓦勒变性的自毁程序,该程序是一个活跃的,受到良好调节的过程。导致轴突断裂的途径尚未阐明,但是使用wld(s)突变小鼠进行的实验导致发现NMN腺苷酸转移酶1的过表达或NAD(+)的治疗可以抑制轴突变性。在这项研究中,我们表明嘌呤核苷腺苷和鸟苷而不是肌苷抑制培养的背根神经节神经元的损伤诱导的轴突变性。轴突损伤后6小时内可通过添加腺苷来保存轴突。损伤后不断需要腺苷的存在以维持轴突保护。这些结果共同表明,腺苷不会改变神经元对损伤的反应,而是抑制了轴突破坏性程序的实施和/或执行所必需的局部轴突途径。

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