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MEMS-based fabrication and microfluidic analysis of three-dimensional perfusion systems

机译:基于MEMS的三维灌注系统制造和微流体分析

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摘要

This paper describes fabrication and fluidic characterization of 3D microperfusion systems that could extend the viability of high-density 3D cultures in vitro. High-aspect ratio towers serve as 3D scaffolds to support the cultures and contain injection sites for interstitial delivery of nutrients, drugs, and other reagents. Hollow and solid-top tower arrays with laser ablated side-ports were fabricated using SU-8. Appropriate sizing of fluidic ports improves the control of agent delivery. Microfluidic perfusion can be used to continuously deliver equal amount of nutrients through all ports, or more media can be delivered at some ports than the others, thus allowing spatial control of steady concentration gradients throughout the culture thickness. The induced 3D flow around towers was validated using micro particle image velocimetry. Based on experimental data, the flow rates from the characteristic ports were found to follow the analytical predictions.
机译:本文介绍了3D微灌流系统的制造和流体表征,这些系统可以扩展体外高密度3D培养物的生存能力。高纵横比的塔用作3D支架以支撑培养,并包含用于间质输送营养物,药物和其他试剂的注射位点。使用SU-8制作了带有激光烧蚀侧孔的中空塔顶阵列。适当调整流体端口的大小可改善对药剂输送的控制。微流体灌流可用于通过所有端口连续输送等量的营养物,或者在某些端口处可比其他端口输送更多的培养基,从而可以在整个培养厚度上进行稳定浓度梯度的空间控制。使用微粒图像测速法验证了塔周围的3D流动。根据实验数据,发现来自特征端口的流速遵循分析预测。

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