首页> 外文期刊>Journal of Neuroscience Methods >Plate reader-based assays for measuring cell viability, neuroprotection and calcium in primary neuronal cultures.
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Plate reader-based assays for measuring cell viability, neuroprotection and calcium in primary neuronal cultures.

机译:基于读板器的测定法,用于测量原代神经元培养物中的细胞活力,神经保护作用和钙。

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摘要

Drug discovery and development efforts critically rely on cell-based assays for high-throughput screening. These assay systems mostly utilize immortalized cell lines, such as human embryonic kidney cells, and can provide information on cytotoxicity and cell viability, permeability and uptake of compounds as well as receptor pharmacology. While this approach has proven extremely useful for single-target pharmacology, there is an urgent need for neuropharmacological studies to screen novel drug candidates in a cellular environment resembles neurons in vivo more closely, in order to gain insight into the involvement of multiple signaling pathways. Primary cultured neuronal cells, such as cortical neurons, have long been used for basic research and low-throughput screening and assay development, and may thus be suitable candidates for the development of neuropharmacological high-throughput screening approaches. We here developed and optimized protocols for the use of primary cortical neuronal cells in high-throughput assays for neuropharmacology and neuroprotection, including calcium mobilization, cytotoxicity and viability as well as ion channel pharmacology. Our data show low inter-experimental variability and similar reproducibility as conventional cell line assays. We conclude that primary neuronal cultures provide a viable alternative to cell lines in high-throughput assay systems by providing a cellular environment more closely resembling physiological conditions in the central nervous system.
机译:药物发现和开发工作主要依赖于基于细胞的检测方法进行高通量筛选。这些测定系统主要利用永生化的细胞系,例如人类胚胎肾细胞,并且可以提供有关细胞毒性和细胞活力,化合物的通透性和摄取以及受体药理学的信息。尽管已证明这种方法对于单靶标药理学极为有用,但迫切需要进行神经药理学研究,以便在与体内神经元相似的细胞环境中更紧密地筛选新的候选药物,以深入了解多种信号通路的参与。原代培养的神经元细胞(例如皮质神经元)长期以来一直用于基础研究以及低通量筛选和测定开发,因此可能是开发神经药理学高通量筛选方法的合适候选人。我们在此开发并优化了协议,以供在神经药理学和神经保护作用(包括钙动员,细胞毒性和生存力以及离子通道药理学)的高通量分析中使用原代皮层神经元细胞。我们的数据显示出与常规细胞系测定法相比,实验之间的变异性低且可重复性相似。我们得出的结论是,初级神经元文化通过提供更类似于中枢神经系统生理状况的细胞环境,为高通量检测系统中的细胞系提供了可行的替代方法。

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