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Engineering Endothelialized Microfluidics for Investigating Vascular and Hematologic Processes Using Non-Traditional Fabrication Techniques

机译:工程内皮化微流控技术用于使用非传统制造技术研究血管和血液学过程

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摘要

Investigating the complex interplay between blood cells and the endothelium is crucial in understanding the pathophysiology of many diseases. Observation of the in vivo vasculature is difficult due to the complexities of vessel geometry, limited visualization capability, as well as variability and complexity inherent to biologic systems. Therefore, in vitro systems serve as ideal tools to study these cellular interactions. Microfluidic technologies are an ideal tool for recapitulating the vasculature in vivo as they can be used to fabricate fluidic channels on the size scale capillaries using gas permeable, biologically inert, and optically transparent substrates. Microfluidic channels can be vascularized by coating the inner surface of the microchannels with a confluent monolayer of endothelial cells, representing a reductionist, tightly controlled, in vitro model of the microvasculature. In this review, we present advances in the field of “endothelialized” microfluidics, focusing specifically on non-traditional fabrication and endothelialization techniques. We then summarize the various applications of endothelialized microfluidics, and speculate on the future directions of the field, including the exciting applications to personalized medicine.
机译:研究血细胞和内皮之间复杂的相互作用对于理解许多疾病的病理生理至关重要。由于血管几何形状的复杂性,有限的可视化能力以及生物系统固有的可变性和复杂性,很难观察到体内脉管系统。因此,体外系统是研究这些细胞相互作用的理想工具。微流体技术是在体内概括脉管系统的理想工具,因为它们可用于使用透气,生物惰性和光学透明的基质在规模毛细管上制造流体通道。可以通过用汇合的内皮细胞单层覆盖微通道的内表面来使微流通道血管化,这代表着微血管的还原性,严格控制的体外模型。在这篇综述中,我们介绍了“内皮化”微流控技术领域的进展,特别是非传统制造和内皮化技术。然后,我们总结了内皮化微流控技术的各种应用,并推测了该领域的未来方向,包括对个性化医学的激动人心的应用。

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