Response of neural stem cells to ionizing radiation

K. Kulcenty, J. Wróblewska, W. Suchorska
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Abstract

Adult neurons are believed to be in a state of growth arrest. The generation of neurons is complete at the time of birth in most of the brain regions. However neurogenesis is present through life in the dentate gyrus of hippocampus and the lateral ventricles due to the presence of neural stem cells (NSC). This postnatal neurogenesis in hippocampus plays a critical role in cognitive development mainly in learning and memory functions. NSC are self-renewing, multipotent cells that generate the neurons and glia of the nervous system. Due to their high proliferation, NSC are highly sensitive to ionizing radiation. This review describes the current knowledge on impact of ionizing radiation on neural stem cells biology. Widening the knowledge of mechanisms involved in radiation-induced neurotoxicity at the level of NSC may help to overcome in the future the side effects occurring after anti-cancer therapies of the brain and help to protect and maintain neurogenesis.
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神经干细胞对电离辐射的反应
成人神经元被认为处于生长停滞状态。大多数大脑区域的神经元生成在出生时就完成了。然而,由于神经干细胞(NSC)的存在,神经发生在海马齿状回和侧脑室的生命中存在。出生后海马体的神经发生在认知发育中起着关键作用,主要是学习和记忆功能。NSC是一种自我更新的多能细胞,可以产生神经系统的神经元和神经胶质。由于其高增殖性,NSC对电离辐射高度敏感。本文综述了电离辐射对神经干细胞生物学影响的最新研究进展。在NSC水平上扩大辐射诱导神经毒性机制的知识可能有助于克服未来脑部抗癌治疗后发生的副作用,并有助于保护和维持神经发生。
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