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细胞周期抑制而不破坏神经发生是治疗中枢神经系统疾病的一种策略。

Cell cycle inhibition without disruption of neurogenesis is a strategy for treatment of central nervous system diseases.

机构信息

Department of Neurology and the M.I.N.D. Institute, University of California at Davis, Sacramento, CA 95817, USA.

出版信息

Neurobiol Dis. 2010 Mar;37(3):549-57. doi: 10.1016/j.nbd.2009.11.013. Epub 2009 Nov 24.

Abstract

Classically, the cell cycle is regarded as the process leading to cellular proliferation. However, increasing evidence over the last decade supports the notion that neuronal cell cycle re-entry results in post-mitotic death. A mature neuron that re-enters the cell cycle can neither advance to a new G0 quiescent state nor revert to its earlier G0 state. This presents a critical dilemma to the neuron from which death may be an unavoidable but necessary outcome for adult neurons attempting to complete the cell cycle. In contrast, tumor cells that undergo aberrant cell cycle re-entry divide and can survive. Thus, cell cycle inhibition strategies are of interest in cancer treatment but may also represent an important means of protecting neurons. In this review, we put forth the concept of the "expanded cell cycle" and summarize the cell cycle proteins, signal transduction events and mitogenic molecules that can drive a neuron into the cell cycle in various CNS diseases. We also discuss the pharmacological approaches that interfere with the mitogenic pathways and prevent mature neurons from attempting cell cycle re-entry, protecting them from cell death. Lastly, future attempts at blocking the cell cycle to rescue mature neurons from injury should be designed so as to not block normal neurogenesis.

摘要

从传统观点来看,细胞周期被视为导致细胞增殖的过程。然而,过去十年间越来越多的证据表明,神经元细胞周期重新进入会导致有丝分裂后死亡。进入细胞周期的成熟神经元既不能前进到新的 G0 静止状态,也不能恢复到其早期的 G0 状态。这给神经元带来了一个严重的困境,对于试图完成细胞周期的成年神经元来说,死亡可能是不可避免但必要的结果。相比之下,经历异常细胞周期重新进入的肿瘤细胞会分裂并存活。因此,细胞周期抑制策略在癌症治疗中很有意义,但也可能是保护神经元的重要手段。在这篇综述中,我们提出了“扩展细胞周期”的概念,并总结了可在各种中枢神经系统疾病中将神经元驱动到细胞周期中的细胞周期蛋白、信号转导事件和有丝分裂原分子。我们还讨论了干扰有丝分裂途径并防止成熟神经元尝试细胞周期重新进入从而防止其死亡的药理学方法。最后,阻止细胞周期以挽救成熟神经元免受损伤的未来尝试应该设计为不阻断正常的神经发生。

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