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首页> 外文期刊>Journal of molecular histology >Fly neurons in culture: a model for neural development and pathology.
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Fly neurons in culture: a model for neural development and pathology.

机译:在文化中飞翔的神经元:神经发育和病理学的模型。

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Primary neural cultures from the fruit fly, Drosophila melanogaster, enable a high-resolution glance into cellular processes and neuronal interaction. The development of the culture, along with its vitality and functionality, can be continuously monitored, and the abundance of available tools for D. melanogaster research can greatly assist in characterizing different aspects of the culture. The fly primary neural culture preparation thus offers a promising platform for studying a variety of processes relating to nervous system development, activity and pathology. Our data reveal that neural cultures derived from the CNS of third-instar D. melanogaster larvae undergo an organization process that is specific and consistent throughout different cultures, and culminates in the creation of an elaborate neural network. We demonstrate that this process is accompanied by detectable changes in the protein expression profile of the culture, indicating the involvement of multi-protein processes specific to each stage of the network's development. As a further proof of concept, we demonstrate differential expression of a particular protein family, the gap-junction constructing innexin protein family, throughout the network's life.
机译:来自果蝇果蝇的主要神经培养物使人们能够高分辨率浏览到细胞过程和神经元相互作用。可以不断监测文化的发展及其活力和功能,而用于黑腹果蝇研究的大量可用工具可以极大地帮助表征该文化的不同方面。因此,蝇原代神经培养制剂为研究与神经系统发育,活动和病理学有关的各种过程提供了一个有前途的平台。我们的数据表明,来自三龄黑尾果蝇幼虫中枢神经系统的神经文化经历了一个组织过程,该过程在不同文化中都是特定且一致的,最终形成了精致的神经网络。我们证明,此过程伴随着可培养的蛋白质表达谱中可检测到的变化,表明特定于网络发展各个阶段的多蛋白过程的参与。作为概念的进一步证明,我们展示了整个网络生命中特定蛋白质家族(间隙连接构建型内毒素蛋白质家族)的差异表达。

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