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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Quantitation of Chronic and Acute Treatment Effects on Neuronal Network Activity Using Image and Signal Analysis: Toward a High-Content Assay
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Quantitation of Chronic and Acute Treatment Effects on Neuronal Network Activity Using Image and Signal Analysis: Toward a High-Content Assay

机译:使用图像和信号分析定量分析慢性和急性治疗对神经元网络活动的影响:迈向高含量检测

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Upon maturation, primary neuronal cultures form an interconnected network based on neurite outgrowth and synaptogenesis in which spontaneous electrical activity arises. Measurement of network activity allows quantification of neuronal health and maturation. A fluorescent indicator was used to monitor secondary calcium influxes after the occurrence of action potentials, allowing us to examine activity of hippocampal cultures via confocal live cell imaging. Subsequently, nuclear staining with DAPI allows accurate cell segmentation. To analyze the calcium recording in a robust, observer-independent manner, we implemented an automated image-and signal-processing algorithm and validated it against a visual, interactive procedure. Both methods yielded similar results on the emergence of synchronized activity and allowed robust quantitative measurement of acute and chronic modulation of drugs on network activity. Both the number of days in vitro (DIV) and neutralization of nerve growth factor (NGF) have a significant effect on synchronous burst frequency and correlation. Acute effects are demonstrated using 5-HT (serotonin) and ethylene glycol tetra-acetic acid. Automated analysis allowed measuring additional features, such as peak decay times and bursting frequency of individual neurons. Based on neuronal cell cultures in 96-well plates and accurate calcium recordings, the analysis method allows development of an integrated high-content screening assay. Because molecular biological techniques can be applied to assess the influence of genes on network activity, it is applicable for neurotoxicity or neurotrophics screening as well as development of in vitro disease models via, for example, pharmacologic manipulation or RNAi.
机译:成熟后,初级神经元培养物形成基于神经突生长和突触形成的相互连接的网络,在突触中产生自发的电活动。网络活动的测量可以量化神经元的健康和成熟度。在动作电位发生后,使用荧光指示剂监测继发的钙流入,使我们能够通过共聚焦活细胞成像检查海马培养物的活性。随后,用DAPI进行核染色可进行准确的细胞分割。为了以一种健壮的,独立于观察者的方式分析钙记录,我们实施了一种自动化的图像和信号处理算法,并通过视觉,交互式程序对其进行了验证。两种方法在同步活动的出现上都产生了相似的结果,并允许对网络活动对药物的急性和慢性调节进行可靠的定量测量。体外培养的天数(DIV)和神经生长因子的中和作用(NGF)都对同步猝发频率和相关性产生重大影响。使用5-HT(5-羟色胺)和乙二醇四乙酸证明了急性效应。自动化分析允许测量其他功能,例如峰值衰减时间和单个神经元的爆发频率。基于96孔板中的神经元细胞培养物和准确的钙记录,该分析方法允许开发集成的高含量筛选测定法。由于分子生物学技术可用于评估基因对网络活动的影响,因此它可用于神经毒性或神经营养筛查,以及通过例如药理操作或RNAi进行体外疾病模型的开发。

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