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A leech brain in the dish: a method for detailed analysis of specifically labeled single cells

机译:盘中的水蛭大脑:一种详细分析特异标记的单细胞的方法

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One of the major goals in neuroscience is to identify the enormous diversity of neurons, depict their heterogeneity, andexplore their function under normal and pathological conditions. To date, the repetitive study of specific neurons in thevertebrate nervous system is almost impossible. Invertebrate nervous systems, on the other hand, have provided anopportunity to study single identified neurons for decades. However, simple methods to study the identified neurons incell culture are still lacking.In this research study we developed a simple method, based on microinjection, to study and manipulate single identifiedneurons in culture. The concept behind this method is to utilize the advantages and simplicity of the leech nervoussystem. Within the leech ganglion, neurons are arranged in a characteristic and stereotypical manner. Their location, size,and biophysical properties are highly characterized. This allows us to identify and label specific cells of interest prior toplating. These cells can be later identified throughout their culture development solely by fluorescent imaging thousandsof cells in a cell culture consisting of neuronal and non-neuronal cell populations. Here, we present a proof of concept forthis method. We demonstrate neuronal viably by following the procedure up to 7 days and by introducing differentmolecules to different neurons of interest. This method can easily be adapted to other invertebrate brains and opens upnew possibilities for precise manipulation, study, and characterization of specific individual neurons in cell culture.
机译:神经科学的主要目标是识别巨大的神经元多样性,描绘了它们的异质性,以及在正常和病理条件下探索其功能。迄今为止,特定神经元的重复研究脊椎动物神经系统几乎是不可能的。另一方面,无脊椎动物神经系统提供了一个几十年来研究单一确定神经元的机会。但是,研究所识别的神经元的简单方法细胞培养仍然缺乏。在这项研究中,我们开发了一种基于显微注射的简单方法,以研究和操纵单一确定的文化中的神经元。这种方法背后的概念是利用水蛭紧张的优点和简洁系统。在水蛭神经节内,神经元以特征和陈规定型的方式排列。他们的位置,大小,和生物物理性质具有高度特征。这使我们能够在此之前识别和标记特定的感兴趣的细胞电镀。这些细胞可以在整个培养开发中仅通过荧光成像数千次培养细胞培养中的细胞组成的神经元和非神经细胞群。在这里,我们展示了一个概念证明这种方法。通过遵循长达7天的程序,通过介绍不同的程序,我们展示神经元天亮分子到不同神经元的兴趣。这种方法很容易适应其他无脊椎动物脑并打开细胞培养中精确操纵,研究和表征的新可能性。

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