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Development and characterization of a microfluidic chamber Incorporating fluid ports with active suction for localized chemical stimulation of brain slices

机译:微流体腔室的开发和表征,该腔室带有主动抽吸功能的流体端口,可对脑片进行局部化学刺激

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摘要

We report a novel microfluidic chamber incorporating fluid ports with active suction to achieve localized chemical stimulation of brain slices. A two-level soft-lithography process is used to fabricate fluid ports with integrated injection and suction holes that are connected to underlying microchannels. Fluorescence imaging, particle tracking velocimetry, and cell staining are used to characterize flows around a fluid port with or without active suction to validate effective localization of injected chemicals. To demonstrate biological applicability of the chamber, we show an induction of cortical spreading depression (CSD) waves in mouse brain slices through controlled focal delivery of potassium chloride solution.
机译:我们报告了一种新型的微流体腔室,该腔室结合了具有主动抽吸功能的流体端口,可以实现对脑片的局部化学刺激。使用两级软光刻工艺来制造带有集成的注入孔和抽吸孔的流体端口,这些注入孔和抽吸孔连接到下面的微通道。荧光成像,粒子跟踪测速和细胞染色可用于表征有无吸力的流体端口周围的流动,以验证所注入化学物质的有效定位。为了证明该室的生物学适用性,我们显示了通过氯化钾溶液的受控焦点传递,在小鼠脑片中诱导了皮质扩散抑制(CSD)波。

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