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Perfused drop microfluidic device for brain slice culture-based drug discovery

机译:灌注液滴微流控装置用于基于脑切片培养的药物发现

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摘要

Living slices of brain tissue are widely used to model brain processes in vitro. In addition to basic neurophysiology studies, brain slices are also extensively used for pharmacology, toxicology, and drug discovery research. In these experiments, high parallelism and throughput are critical. Capability to conduct long-term electrical recording experiments may also be necessary to address disease processes that require protein synthesis and neural circuit rewiring. We developed a novel perfused drop microfluidic device for use with long term cultures of brain slices (organotypic cultures). Slices of hippocampus were placed into wells cut in polydimethylsiloxane (PDMS) film. Fluid level in the wells was hydrostatically controlled such that a drop was formed around each slice. The drops were continuously perfused with culture medium through microchannels. We found that viable organotypic hippocampal slice cultures could be maintained for at least 9 days in vitro. PDMS microfluidic network could be readily integrated with substrate-printed microelectrodes for parallel electrical recordings of multiple perfused organotypic cultures on a single MEA chip. We expect that this highly scalable perfused drop microfluidic device will facilitate high-throughput drug discovery and toxicology.
机译:活的脑组织切片被广泛用于体外模拟大脑过程。除基本的神经生理学研究外,脑切片还广泛用于药理学,毒理学和药物发现研究。在这些实验中,高并行度和吞吐量至关重要。进行长期电记录实验的能力对于解决需要蛋白质合成和神经回路重新布线的疾病过程也可能是必需的。我们开发了一种新颖的滴灌微流控设备,可用于脑片的长期培养(有机型培养)。将海马切片放入聚二甲基硅氧烷(PDMS)薄膜切割的孔中。静水控制井中的液位,以便在每个切片周围形成液滴。通过微通道将滴与培养基连续灌注。我们发现可行的器官型海马切片培养物可以在体外维持至少9天。 PDMS微流体网络可以很容易地与基底印刷的微电极集成在一起,以在单个MEA芯片上并行电记录多个灌注的有机型培养物。我们期望这种高度可扩展的灌注液滴微流控设备将促进高通量药物发现和毒理学研究。

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