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Magnetoactive sponges for dynamic control of microfluidic flow patterns in microphysiological systems

机译:磁性海绵,用于动态控制微生理系统中的微流模式

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摘要

We developed a microfluidic flow-control system capable of dynamically generating various flow patterns on demand. The flow-control system is based on novel magnetoactive sponges embedded in microfluidic flow channels. Applying a non-uniform magnetic field compresses the magnetoactive sponge, significantly reducing porosity and hydraulic conductivity. Tuning the applied magnetic field can dynamically vary the flow rate in the microfluidic channel. Pulsatile and physiological flow patterns with frequency between 1 and 3 Hz, flow rates between 0.5 and 10 μl min~(-1) and duration over 3 weeks have been achieved. Smooth muscle cells in engineered blood vessels perfused for 7 days aligned perpendicular to the flow direction under pulsatile but not steady flow, similar to the in vivo orientation. Owing to its various advantages over traditional flow-control methods, the new system potentially has important applications in microfluidic-based microphysiological systems to simulate the physiological nature of blood flow.
机译:我们开发了一种微流体流控制系统,该系统能够根据需要动态生成各种流模式。流量控制系统基于嵌入微流道中的新型磁活性海绵。施加不均匀的磁场会压缩磁活性海绵,从而显着降低孔隙率和水力传导率。调节施加的磁场可以动态地改变微流体通道中的流速。已经实现了频率在1到3 Hz之间,流速在0.5到10μlmin〜(-1)之间,持续时间超过3周的脉动和生理流型。灌注7天后,工程血管中的平滑肌细胞在搏动但不稳定的流动下垂直于流动方向排列,类似于体内方向。由于其相对于传统流量控制方法的各种优势,新系统潜在地在基于微流体的微生理系统中具有重要的应用,以模拟血流的生理特性。

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