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成年海马体中不同神经前体细胞的激活:这是否会产生具有不同功能的新神经元?

Activation of different neural precursor populations in the adult hippocampus: does this lead to new neurons with discrete functions?

机构信息

Queensland Brain Institute, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Dev Neurobiol. 2012 Jul;72(7):1044-58. doi: 10.1002/dneu.22027.

Abstract

Resident populations of stem and precursor cells drive the production of new neurons in the adult hippocampus. Recent discoveries have highlighted that a large proportion of these precursor cells are in fact quiescent and can be activated by distinct neuronal activity under both normal physiological and pathological conditions. As growing evidence indicates that newborn neurons play a critical role in cognitive functions such as learning and memory and in mood regulation, it is paramount that we obtain a better understanding of how the reservoirs of stem and precursor cells are maintained and activated. In this review, we critically examine the roles of key molecular mechanisms that have been shown to regulate hippocampal precursor cells, especially their activation. We believe that understanding the mechanistic details of the activity-driven regulation of precursor cells will equip us with the ability to develop tailored strategies to trigger the generation of new neurons, thereby improving the functional outcomes in various neurological and psychiatric conditions.

摘要

成体海马中的干细胞和前体细胞群体驱动着新神经元的产生。最近的发现强调了一个事实,即这些前体细胞中有很大一部分实际上处于静止状态,并且在正常生理和病理条件下,可以通过不同的神经元活动被激活。随着越来越多的证据表明,新生神经元在学习和记忆等认知功能以及情绪调节中发挥着关键作用,因此,我们必须更好地理解干细胞和前体细胞库是如何维持和激活的。在这篇综述中,我们批判性地检查了已被证明调节海马前体细胞的关键分子机制的作用,特别是它们的激活。我们相信,了解活性驱动的前体细胞调节的机制细节将使我们有能力制定有针对性的策略来触发新神经元的产生,从而改善各种神经和精神疾病的功能结果。

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