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An imaging assay to analyze primary neurons for cellular neurotoxicity.

机译:用于分析原代神经元细胞神经毒性的成像分析。

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The development of high-content screening technologies including automated immunostaining, automated image acquisition and automated image analysis have enabled higher throughput of cellular imaging-based assays. Here we used high-content imaging to thoroughly characterize the cultures of primary rat cerebellar granule neurons (CGNs). We describe procedures to isolate and cultivate the CGNs in 96-well and 384-well format, as well as a procedure to freeze and thaw the CGNs. These methods allow the use of CGNs in 96-well format analyzing 2500 samples per experiment using freshly isolated cells. Down-scaling to 384-well format and freezing and thawing of the CGNs allow even higher throughput. A cellular assay with rat CGN cultures was established to study the neurotoxicity of compounds in order to filter out toxic compounds at an early phase of drug development. The imaging-based toxicity assay was able to reveal adverse effects of compounds on primary neurons which were not detected in neuroblastoma or other cell lines tested.
机译:高含量筛选技术的发展,包括自动免疫染色,自动图像采集和自动图像分析,已经使基于细胞成像的测定法的通量更高。在这里,我们使用高内涵成像来彻底表征原代大鼠小脑颗粒神经元(CGNs)的培养。我们描述了以96孔和384孔格式分离和培养CGN的程序,以及冷冻和融化CGN的程序。这些方法允许使用96孔格式的CGN,每个实验使用新鲜分离的细胞分析2500个样品。缩小到384孔格式,以及CGN的冻结和解冻可以提供更高的吞吐量。建立了大鼠CGN培养物的细胞分析方法,以研究化合物的神经毒性,以便在药物开发的早期阶段滤出有毒化合物。基于成像的毒性测定能够揭示化合物对原代神经元的不良影响,而在成神经细胞瘤或其他测试的细胞系中未检测到。

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