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感觉活动在成年嗅球中化学特化中间神经元群体中的作用。

Role of sensory activity on chemospecific populations of interneurons in the adult olfactory bulb.

机构信息

Cellular Neurobiology Unit, Centre de recherche Université Laval Robert-Giffard, Québec, Québec G1J 2G3, Canada.

出版信息

J Comp Neurol. 2010 May 15;518(10):1847-61. doi: 10.1002/cne.22307.

Abstract

The olfactory bulb (OB) retains a remarkable capacity to renew its interneuronal populations throughout the lifespan of animals. Neuronal precursors giving rise to the bulbar interneurons are generated in the subventricular zone and have to migrate long distances before reaching the OB. In the adult OB these neuronal precursors differentiate into distinct neuronal types, including GABAergic cells located in the granule cell layer and a diverse set of neurons in the glomerular layer comprising GABAergic and dopaminergic interneurons, as well as other neuronal subtypes expressing calretinin and calbindin. While the role of sensory activity in the integration and/or survival of newly generated cells in the olfactory system is well established, very little is known about how odorant-induced activity affects fate specification of newborn cells as well as survival and fate maintenance of preexisting neuronal populations generated in adulthood. The present study demonstrates that sensory deprivation diminishes not only the number of newborn cells in the OB, but also reduces the density of granule and periglomerular cells generated before nostril occlusion. It also shows that sensory activity has an important influence on the development and expression of dopaminergic, but not GABAergic, calretinin or calbindin phenotypes. Our data reveal that odorant-induced activity is important for the survival of both newborn and preexisting OB interneurons generated at adulthood and suggests that these chemospecific populations are differentially affected by sensory deprivation.

摘要

嗅球(OB)在动物的整个生命周期中都保持着显著的神经元群体再生能力。产生嗅球中间神经元的神经前体细胞在侧脑室下区产生,并且必须迁移很长的距离才能到达 OB。在成年 OB 中,这些神经前体细胞分化为不同的神经元类型,包括位于颗粒细胞层中的 GABA 能细胞和肾小球层中的一组不同的神经元,包括 GABA 能和多巴胺能中间神经元,以及表达钙结合蛋白和钙调蛋白的其他神经元亚型。虽然感觉活动在嗅觉系统中新生细胞的整合和/或存活中的作用已得到充分证实,但对于气味诱导的活动如何影响新生细胞的命运特化以及成年期产生的预先存在的神经元群体的存活和命运维持知之甚少。本研究表明,感觉剥夺不仅会减少 OB 中的新生细胞数量,还会减少在鼻孔闭塞前产生的颗粒细胞和肾小球旁细胞的密度。它还表明,感觉活动对多巴胺能但不是 GABA 能、钙结合蛋白或钙调蛋白表型的发育和表达有重要影响。我们的数据表明,气味诱导的活动对于成年期产生的新生和预先存在的 OB 中间神经元的存活都很重要,并表明这些化学特异性群体受到感觉剥夺的不同影响。

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