首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Assessment of the Effects of Endocrine Disrupting Compounds on the Development of Vertebrate Neural Network Function Using Multi-electrode Arrays
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Assessment of the Effects of Endocrine Disrupting Compounds on the Development of Vertebrate Neural Network Function Using Multi-electrode Arrays

机译:使用多电极阵列评估内分泌干扰化合物对脊椎动物神经网络功能发展的影响

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摘要

Bis-phenols, such as bis-phenol A (BPA) and bis-phenol-S (BPS), are polymerizing agents widely used in the production of plastics and numerous everyday products. They are classified as endocrine disrupting compounds (EDC) with estradiol-like properties. Long-term exposure to EDCs, even at low doses, has been linked with various health defects including cancer, behavioral disorders, and infertility, with greater vulnerability during early developmental periods. To study the effects of BPA on the development of neuronal function, we used an in vitro neuronal network derived from the early chick embryonic brain as a model. We found that exposure to BPA affected the development of network activity, specifically spiking activity and synchronization. A change in network activity is the crucial link between the molecular target of a drug or compound and its effect on behavioral outcome. Multi-electrode arrays are increasingly becoming useful tools to study the effects of drugs on network activity in vitro. There are several systems available in the market and, although there are variations in the number of electrodes, the type and quality of the electrode array and the analysis software, the basic underlying principles, and the data obtained is the same across the different systems. Although currently limited to analysis of two-dimensional in vitro cultures, these MEA systems are being improved to enable in vivo network activity in brain slices. Here, we provide a detailed protocol for embryonic exposure and recording neuronal network activity and synchrony, along with representative results.
机译:双酚,例如双酚A(BPA)和双酚S(BPS),是广泛用于塑料和众多日常产品生产的聚合剂。它们被分类为具有雌二醇样性质的内分泌干扰化合物(EDC)。长期暴露于EDCs,即使是低剂量,也与多种健康缺陷有关,包括癌症,行为障碍和不育症,在早期发育阶段的脆弱性更大。为了研究BPA对神经元功能发展的影响,我们使用了源自早期鸡胚大脑的体外神经元网络作为模型。我们发现,接触BPA会影响网络活动的发展,特别是峰值活动和同步。网络活动的变化是药物或化合物的分子靶标与其对行为结果的影响之间的关键联系。多电极阵列正日益成为研究药物对体外网络活性影响的有用工具。市场上有几种系统可用,尽管电极数量,电极阵列和分析软件的类型和质量,基本的基本原理以及获得的数据在不同系统上都存在差异,但存在差异。尽管目前仅限于二维体外培养物的分析,但这些MEA系统正在得到改进,以实现脑切片的体内网络活动。在这里,我们为胚胎暴露提供了详细的协议,并记录了神经元网络的活动和同步以及代表性的结果。

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