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A microdevice for the creation of patent, three-dimensional endothelial cell-based microcirculatory networks

机译:用于创建基于专利的三维内皮细胞微循环网络的微设备

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摘要

Microvascular network formation is a significant and challenging goal in the engineering of large three-dimensional artificial tissue structures. We show here the development of a fully patent, 3D endothelial cell (microvascular) microfluidic network that has a single inlet and outlet, created in only 28 h in a microdevice involving fluid flow equivalent to natural vasculature. Our microdevice features a tailored “multi-rung ladder” network, a stylized mimic of an arterial-to-venous pedicle, designed to also allow for systematic and reproducible cell seeding. Immunofluorescence staining revealed a highly contiguous endothelial monolayer (human umbilical vein endothelial cells) throughout the whole network after 24 h of continuous perfusion. This network persisted for up to 72 h of culture, providing a useful template from which the effects of surface chemistry, fluid flow, and environmental conditions on the development of artificial vascular networks ex vivo may be rapidly and robustly evaluated.
机译:在大型三维人造组织结构的工程设计中,微血管网络的形成是一个重要且具有挑战性的目标。我们在这里展示了拥有专利的3D内皮细胞(微血管)微流体网络的开发,该网络具有单个入口和出口,该微型入口仅在28小时内在微型设备中就产生了等效于自然脉管系统的流体流动。我们的微型设备具有量身定制的“多梯级梯形”网络,是动脉到静脉蒂的程式化模仿物,旨在还可以进行系统且可重复的细胞接种。免疫荧光染色显示,连续灌注24小时后,整个网络中的内皮单层高度连续(人脐静脉内皮细胞)。该网络可以持续长达72小时的培养,提供了有用的模板,可从中快速,可靠地评估表面化学,流体流量和环境条件对离体人工血管网络发育的影响。

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