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成年神经发生对嗅觉处理早期事件的调控。

Control of early events in olfactory processing by adult neurogenesis.

作者信息

Gheusi Gilles, Lledo Pierre-Marie

机构信息

Laboratory of Perception and Memory, Pasteur Institute, CNRS URA 2182, 25 rue du Docteur Roux, 75724 Paris Cedex 15, France.

出版信息

Chem Senses. 2007 May;32(4):397-409. doi: 10.1093/chemse/bjm012. Epub 2007 Apr 2.

Abstract

The mature brain needs to have flexible control over behavior in the face of ever-changing needs. It achieves this control through morphological and physiological changes at the level of molecules, spines, dendrites, and axons and through processes of adult neurogenesis, entire cells. The functional maturation of newly generated cells in the adult forebrain involves the expression of neurotransmitter receptors before synaptic activity and excitatory gamma-aminobutyric acid (GABAergic) influences prior to glutamatergic input. The production of new cells for incorporation into neural circuits that are already up and running gives rise to a unique situation that may require epigenetic regulation. However, once mature, new neurons must carve out a niche among more established cells to be useful. How do they survive and what are they used for? Recent studies have revealed that adult neurogenesis alters the olfactory bulb at all levels, from single cells to the network and system levels. It has also been suggested that cell turnover may be particularly beneficial for the processing of new information in dynamic networks. However, elucidating the functional meaning of adult neurogenesis must wait for the development of new paradigms to eliminate the pool of newly generated neurons but sparing the preexisting ones. Nevertheless, there is already considerable correlative evidence to indicate that adult neurogenesis is a plastic mechanism by which the performance of the brain can be optimized in a given environment.

摘要

成熟的大脑需要在面对不断变化的需求时,对行为进行灵活控制。它通过分子、树突棘、树突和轴突水平的形态和生理变化,以及成体神经发生过程(即整个细胞的变化)来实现这种控制。成体前脑中新生成细胞的功能成熟涉及突触活动之前神经递质受体的表达,以及谷氨酸能输入之前兴奋性γ-氨基丁酸(GABA能)的影响。产生新细胞以纳入已经在运行的神经回路会产生一种独特的情况,这可能需要表观遗传调控。然而,一旦成熟,新神经元必须在更成熟的细胞中找到自己的位置才能发挥作用。它们如何存活以及有何用途?最近的研究表明,成体神经发生在各个层面上都会改变嗅球,从单个细胞到网络和系统层面。也有人提出,细胞更替可能对动态网络中处理新信息特别有益。然而,阐明成体神经发生的功能意义必须等待新范式的发展,以便消除新生成的神经元池,同时保留已有的神经元。尽管如此,已经有相当多的相关证据表明,成体神经发生是一种可塑性机制,通过这种机制,大脑的性能可以在给定环境中得到优化。

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