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Primary Neuronal Cultures from the Brains of Late Stage DrosophilaPupae

机译:来自后期果蝇大脑的主要神经元文化。蛹

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摘要

In this video, we demonstrate the preparation of primary neuronal cultures from the brains of late stage Drosophila pupae. The procedure begins with the removal of brains from animals at 70-78 hrs after puparium formation. The isolated brains are shown after brief incubation in papain followed by several washes in serum-free growth medium. The process of mechanical dissociation of each brain in a 5 ul drop of media on a coverslip is illustrated. The axons and dendrites of the post-mitotic neurons are sheered off near the soma during dissociation but the neurons begin to regenerate processes within a few hours of plating. Images show live cultures at 2 days. Neurons continue to elaborate processes during the first week in culture. Specific neuronal populations can be identified in culture using GAL4 lines to drive tissue specific expression of fluorescent markers such as GFP or RFP. Whole cell recordings have demonstrated the cultured neurons form functional, spontaneously active cholinergic and GABAergic synapses. A short video segment illustrates calcium dynamics in the cultured neurons using Fura-2 as a calcium indicator dye to monitor spontaneous calcium transients and nicotine evoked calcium responses in a dish of cultured neurons. These pupal brain cultures are a useful model system in which genetic and pharmacological tools can be used to identify intrinsic and extrinsic factors that influence formation and function of central synapses.
机译:在此视频中,我们演示了从后期果蝇p的大脑准备初级神经元培养物的过程。该程序开始于形成后70-78小时从动物的大脑中取出。在木瓜蛋白酶中短暂孵育,然后在无血清生长培养基中洗涤几次后,显示了分离的大脑。说明了在盖玻片上每滴5 ul介质中每个大脑的机械解离过程。有丝分裂后神经元的轴突和树突在解离过程中在躯体附近脱落,但神经元在铺板的几个小时内开始再生。图片显示了2天的现场文化。在培养的第一周中,神经元继续完善过程。可以在培养中使用GAL4系鉴定特定的神经元种群,以驱动荧光标记(例如GFP或RFP)的组织特异性表达。全细胞记录表明,培养的神经元形成功能性,自发性胆碱能和GABA能突触。一个简短的视频片段说明了使用Fura-2作为钙指示剂染料来监测培养的神经元培养皿中自发钙瞬变和尼古丁诱发的钙反应的培养神经元中的钙动力学。这些p脑培养物是有用的模型系统,其中遗传和药理学工具可用于识别影响中枢突触的形成和功能的内在和外在因素。

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