论文标题

高密度微电极阵列上的微流体细胞工程,用于评估生物神经元网络中的结构功能关系

Microfluidic cell engineering on high-density microelectrode arrays for assessing structure-function relationships in living neuronal networks

论文作者

Sato, Yuya, Yamamoto, Hideaki, Kato, Hideyuki, Tanii, Takashi, Sato, Shigeo, Hirano-Iwata, Ayumi

论文摘要

解离文化中的神经元网络与细胞工程技术相结合,提供了一个关键的平台,可以建设性地探索活着神经元网络中的结构与功能之间的关系。在这里,我们制造了定义的神经元网络,该网络具有高密度微电极阵列(HD-MEAS)的模块化结构,这是一种最新的电生理工具,用于记录具有高空间和时间分辨率的神经活动。我们首先使用细胞渗透水凝胶建立了表面涂料方案,以稳定地在HD-MEA上附着聚二甲基硅氧烷微流体膜。然后,我们记录了工程神经元网络的自发神经活动,该网络揭示了工程神经元网络的重要肖像 - 模块化结构通过降低空间分离的模块之间的过度神经相关性来增强功能复杂性。这项研究的结果突出了HD-MEA记录与细胞工程技术相结合的影响,作为神经科学的新工具,可以建设性地评估神经元网络中的结构功能关系。

Neuronal networks in dissociated culture combined with cell engineering technology offer a pivotal platform to constructively explore the relationship between structure and function in living neuronal networks. Here, we fabricated defined neuronal networks possessing a modular architecture on high-density microelectrode arrays (HD-MEAs), a state-of-the-art electrophysiological tool for recording neural activity with high spatial and temporal resolutions. We first established a surface coating protocol using a cell-permissive hydrogel to stably attach polydimethylsiloxane microfluidic film on the HD-MEA. We then recorded the spontaneous neural activity of the engineered neuronal network, which revealed an important portrait of the engineered neuronal network--modular architecture enhances functional complexity by reducing the excessive neural correlation between spatially segregated modules. The results of this study highlight the impact of HD-MEA recordings combined with cell engineering technologies as a novel tool in neuroscience to constructively assess the structure-function relationships in neuronal networks.

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