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膜蛋白Nogo-A的中和作用可增强已建立的海马脑片培养物中的生长和反应性发芽。

Neutralization of the membrane protein Nogo-A enhances growth and reactive sprouting in established organotypic hippocampal slice cultures.

作者信息

Craveiro Luis M, Hakkoum David, Weinmann Oliver, Montani Laura, Stoppini Luc, Schwab Martin E

机构信息

Brain Research Institute, University of Zurich, Zurich, Switzerland.

出版信息

Eur J Neurosci. 2008 Nov;28(9):1808-24. doi: 10.1111/j.1460-9568.2008.06473.x.

Abstract

The reduced ability of central axons to regenerate after injury is significantly influenced by the presence of several molecules that inhibit axonal growth. Nogo-A is one of the most studied and most potent of the myelin-associated growth inhibitory molecules. Its neutralization, as well as interference with its signalling, allows for enhanced axonal sprouting and growth following injury. Using differentiated rat organotypic hippocampal slice cultures treated for 5 days with either of two different function-blocking anti-Nogo-A antibodies, we show an increase in CA3 fibre regeneration after lesion. In intact slices, 5 days of anti-Nogo-A antibody treatment led to increased sprouting of intact CA3 fibres that are positive for neurofilament 68. A transcriptomic approach confirmed the occurrence of a growth response on the molecular level upon Nogo-A neutralization in intact cultures. Our results demonstrate that Nogo-A neutralization for 5 days is sufficient for the induction of growth in mature CNS tissue without the prerequisite of an injury. Nogo-A may therefore act as a tonic growth suppressor/stabilizer in the adult intact hippocampus.

摘要

损伤后中枢轴突再生能力的降低受到多种抑制轴突生长分子的显著影响。Nogo-A是研究最多、最有效的髓磷脂相关生长抑制分子之一。对其进行中和以及干扰其信号传导,可使损伤后轴突的发芽和生长增强。我们使用分化的大鼠器官型海马切片培养物,用两种不同的功能阻断抗Nogo-A抗体之一处理5天,结果显示损伤后CA3纤维再生增加。在完整切片中,5天的抗Nogo-A抗体处理导致完整的、神经丝68呈阳性的CA3纤维发芽增加。转录组学方法证实,在完整培养物中,Nogo-A中和后在分子水平上发生了生长反应。我们的结果表明,5天的Nogo-A中和足以在成熟的中枢神经系统组织中诱导生长,而无需损伤前提。因此,Nogo-A可能在成年完整海马体中充当一种紧张性生长抑制因子/稳定剂。

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