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感觉结构中成年神经发生的感觉特异性调节与斑马鱼脑神经发生微环境中存在的干细胞类型有关。

Sensory-specific modulation of adult neurogenesis in sensory structures is associated with the type of stem cell present in the neurogenic niche of the zebrafish brain.

作者信息

Lindsey Benjamin W, Di Donato Sabrina, Kaslin Jan, Tropepe Vincent

机构信息

Australian Regenerative Medicine Institute, Monash University Clayton Campus, Clayton, Vic., Australia.

出版信息

Eur J Neurosci. 2014 Dec;40(11):3591-607. doi: 10.1111/ejn.12729. Epub 2014 Sep 18.

Abstract

Teleost fishes retain populations of adult stem/progenitor cells within multiple primary sensory processing structures of the mature brain. Though it has commonly been thought that their ability to give rise to adult-born neurons is mainly associated with continuous growth throughout life, whether a relationship exists between the processing function of these structures and the addition of new neurons remains unexplored. We investigated the ultrastructural organisation and modality-specific neurogenic plasticity of niches located in chemosensory (olfactory bulb, vagal lobe) and visual processing (periventricular grey zone, torus longitudinalis) structures of the adult zebrafish (Danio rerio) brain. Transmission electron microscopy showed that the cytoarchitecture of sensory niches includes many of the same cellular morphologies described in forebrain niches. We demonstrate that cells with a radial-glial phenotype are present in chemosensory niches, while the niche of the caudal tectum contains putative neuroepithelial-like cells instead. This was supported by immunohistochemical evidence showing an absence of glial markers, including glial fibrillary acidic protein, glutamine synthetase, and S100β in the tectum. By exposing animals to sensory assays we further illustrate that stem/progenitor cells and their neuronal progeny within sensory structures respond to modality-specific stimulation at distinct stages in the process of adult neurogenesis - chemosensory niches at the level of neuronal survival and visual niches in the size of the stem/progenitor population. Our data suggest that the adult brain has the capacity for sensory-specific modulation of adult neurogenesis and that this property may be associated with the type of stem cell present in the niche.

摘要

硬骨鱼在成熟大脑的多个主要感觉处理结构中保留着成体干细胞/祖细胞群体。尽管人们普遍认为它们产生新生神经元的能力主要与终生持续生长有关,但这些结构的处理功能与新神经元添加之间是否存在关系仍未得到探索。我们研究了成年斑马鱼(Danio rerio)大脑化学感觉(嗅球、迷走神经叶)和视觉处理(脑室周围灰质区、纵纹隆起)结构中微环境的超微结构组织和模式特异性神经源性可塑性。透射电子显微镜显示,感觉微环境的细胞结构包括许多在前脑微环境中描述的相同细胞形态。我们证明,具有放射状胶质细胞表型的细胞存在于化学感觉微环境中,而尾侧顶盖的微环境则含有推定的神经上皮样细胞。免疫组织化学证据支持了这一点,该证据显示顶盖中不存在包括胶质纤维酸性蛋白、谷氨酰胺合成酶和S100β在内的胶质标记物。通过让动物进行感觉测定,我们进一步说明,感觉结构内的干细胞/祖细胞及其神经元后代在成体神经发生过程的不同阶段对模式特异性刺激作出反应——化学感觉微环境在神经元存活水平,视觉微环境在干细胞/祖细胞群体大小方面。我们的数据表明,成年大脑具有对成体神经发生进行感觉特异性调节的能力,并且这种特性可能与微环境中存在的干细胞类型有关。

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