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Patterns of Olfactory Bulb Neurogenesis in the Adult Zebrafish are Altered Following Reversible Deafferentation

机译:可逆的脱除咖啡因后成年斑马鱼嗅球神经发生的模式被改变。

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摘要

Adult brain plasticity can be investigated using reversible methods that remove afferent innervation but allow return of sensory input. Repeated intranasal irrigation with Triton X-100 in adult zebrafish diminishes innervation to the olfactory bulb, resulting in a number of alterations in bulb structure and function, and cessation of the treatment allows for reinnervation and recovery. Using bromodeoxyuridine, Hu, and caspase-3 immunoreactivity we examined cell proliferation, differentiation, migration, and survival under conditions of acute and chronic deafferentation and reafferentation. Cell proliferation within the olfactory bulb was not influenced by acute or chronic deafferentation or reafferentation, but cell fate (including differentiation, migration, and/or survival of newly formed cells) was affected. We found that chronic deafferentation caused a bilateral increase in the number of newly formed cells that migrated into the bulb, although the amount of cell death of these new cells was significantly increased compared to untreated fish. Reafferentation also increased the number of newly formed cells migrating into both bulbs, suggesting that the deafferentation effect on cell fate was maintained. Reafferentation resulted in a decrease in newly formed cells that became neurons and, although death of newly formed cells was not altered from control levels, survival was reduced in relation to that seen in chronically deafferented fish. The potential effect of age on cell genesis was also examined. While the amount of cell migration into the olfactory bulbs was not affected by fish age, more of the newly formed cells became neurons in older fish. Younger fish displayed more cell death under conditions of chronic deafferentation. In sum, our results show that reversible deafferentation affects several aspects of cell fate, including cell differentiation, migration, and survival, and age of the fish influences the response to deafferentation.
机译:可以使用可逆的方法研究成人的大脑可塑性,该方法可消除传入的神经支配,但允许返回感觉输入。在成年斑马鱼中用Triton X-100反复鼻腔冲洗减少了对嗅球的神经支配,导致了球的结构和功能发生了许多改变,停止治疗可以使神经支配和恢复。使用溴脱氧尿苷,Hu和caspase-3免疫反应性,我们研究了急性和慢性脱除咖啡因和再除咖啡因条件下的细胞增殖,分化,迁移和存活。嗅球内的细胞增殖不受急性或慢性脱除咖啡因或再除咖啡因的影响,但细胞命运(包括新形成细胞的分化,迁移和/或存活)受到影响。我们发现,长期剥脱咖啡因会导致迁移到鳞茎中的新形成细胞数量双侧增加,尽管与未经处理的鱼相比,这些新细胞的细胞死亡量显着增加。脱脂作用还增加了迁移到两个球茎中的新形成细胞的数量,这表明脱脂作用对细胞命运的维持得以维持。翻新导致减少了变成神经元的新形成细胞的数量,尽管新形成的细胞的死亡未从对照水平改变,但相对于长期脱除咖啡因的鱼类,其存活率降低了。还检查了年龄对细胞起源的潜在影响。尽管细胞迁移到嗅球中的数量不受鱼类年龄的影响,但更多的新形成的细胞在年长的鱼类中变成了神经元。年轻的鱼在慢性脱除咖啡因的情况下表现出更多的细胞死亡。总而言之,我们的结果表明,可逆的脱除咖啡因影响细胞命运的几个方面,包括细胞分化,迁移和存活,而鱼的年龄也会影响对脱除咖啡因的反应。

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