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一氧化氮在神经元增殖、存活和分化调节中的作用。

Role of nitric oxide in the regulation of neuronal proliferation, survival and differentiation.

作者信息

Contestabile Antonio, Ciani Elisabetta

机构信息

Department of Biology, University of Bologna, Via Selmi 3, 40126 Bologna, Italy.

出版信息

Neurochem Int. 2004 Nov;45(6):903-14. doi: 10.1016/j.neuint.2004.03.021.

Abstract

Nitric oxide (NO), an important cellular messenger, has been linked to both neurodegenerative and neuroprotective actions. In the present review, we focus on recent data establishing a survival and differentiation role for NO in several neural in vitro and in vivo models. Nitric oxide has been found to be essential for survival of neuronal cell lines and primary neurons in culture under various death challenges. Furthermore, its lack may aggravate some neuropathological conditions in experimental animals. Several cellular pathways and signaling systems subserving this neuroprotective role of NO are considered in the review. Survey of recent data related to the developmental role of NO mainly focus on its action as a negative regulator of neuronal precursor cells proliferation and on its role of promotion of neuronal differentiation. Discussion on discrepancies arising from the literature is focused on the Janus-faced properties of the molecule and it is proposed that most controversial results are related to the intrinsic property of NO to compensate among functionally opposed effects. As an example, the increased proliferation of neural cell precursors under conditions of NO shortage may be, later on in the development, compensated by increased elimination through programmed cell death as a consequence of the lack of the survival-promoting action of the molecule. To elucidate these complex, and possibly contrasting, effects of NO is indicated as an important task for future researches.

摘要

一氧化氮(NO)作为一种重要的细胞信使,与神经退行性变和神经保护作用均有关联。在本综述中,我们聚焦于近期的数据,这些数据证实了NO在多种神经体外和体内模型中的存活及分化作用。已发现一氧化氮对于培养中的神经元细胞系和原代神经元在各种死亡挑战下的存活至关重要。此外,其缺失可能会加重实验动物的某些神经病理状况。本综述探讨了几种支持NO这种神经保护作用的细胞途径和信号系统。对近期与NO发育作用相关数据的调查主要集中在其作为神经元前体细胞增殖的负调节因子的作用以及促进神经元分化的作用。关于文献中出现的差异的讨论聚焦于该分子的双面特性,并提出大多数有争议的结果与NO在功能相反的效应之间进行补偿的内在特性有关。例如,在NO缺乏的情况下神经细胞前体增殖增加,在发育后期可能会由于缺乏该分子的促存活作用而通过程序性细胞死亡增加清除来进行补偿。阐明NO这些复杂且可能相互矛盾的效应被视为未来研究的一项重要任务。

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