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Vascularized Microfluidics and Their Untapped Potential for Discovery in Diseases of the Microvasculature
Annual Review of Biomedical Engineering ( IF 9.7 ) Pub Date : 2021-07-13 , DOI: 10.1146/annurev-bioeng-091520-025358
David R Myers 1, 2 , Wilbur A Lam 1, 2
Affiliation  

Microengineering advances have enabled the development of perfusable, endothelialized models of the microvasculature that recapitulate the unique biological and biophysical conditions of the microcirculation in vivo. Indeed, at that size scale (<100 μm)—where blood no longer behaves as a simple continuum fluid; blood cells approximate the size of the vessels themselves; and complex interactions among blood cells, plasma molecules, and the endothelium constantly ensue—vascularized microfluidics are ideal tools to investigate these microvascular phenomena. Moreover, perfusable, endothelialized microfluidics offer unique opportunities for investigating microvascular diseases by enabling systematic dissection of both the blood and vascular components of the pathophysiology at hand. We review (a) the state of the art in microvascular devices and (b) the myriad of microvascular diseases and pressing challenges. The engineering community has unique opportunities to innovate with new microvascular devices and to partner with biomedical researchers to usher in a new era of understanding and discovery of microvascular diseases.

中文翻译:


血管化微流体及其在微脉管系统疾病中尚未开发的潜力

微工程的进步使得可灌注的微血管内皮化模型的开发成为可能,该模型概括了体内微循环的独特生物和生物物理条件。事实上,在这种尺寸尺度(<100μm)下,血液不再表现为简单的连续流体;血细胞的大小与血管本身的大小相近;血细胞、血浆分子和内皮之间不断发生复杂的相互作用——血管化微流体是研究这些微血管现象的理想工具。此外,可灌注的内皮化微流体通过能够系统地解剖当前病理生理学的血液和血管成分,为研究微血管疾病提供了独特的机会。我们回顾了(a)微血管装置的最新技术和(b)无数的微血管疾病和紧迫的挑战。工程界拥有独特的机会来创新新的微血管设备,并与生物医学研究人员合作,开创理解和发现微血管疾病的新时代。

更新日期:2021-07-14
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