Smith Quinton, Gerecht Sharon
Department of Chemical and Biomolecular Engineering, Johns Hopkins Physical Sciences - Oncology Center and Institute for NanoBioTechnology, Baltimore, MD 21218, United States.
Department of Chemical and Biomolecular Engineering, Johns Hopkins Physical Sciences - Oncology Center and Institute for NanoBioTechnology, Baltimore, MD 21218, United States ; Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, MD 21218, United States.
Curr Opin Chem Eng. 2014 Feb;3:42-50. doi: 10.1016/j.coche.2013.11.001.
Vascularization of tissue-engineered constructs, requiring the transport of oxygen, nutrients and waste through a thick and cellular dense meshwork, continues to hamper the success of the technology in addressing the donor organ shortage crisis. Microfluidic technology has emerged as a viable alternative to traditional platforms utilized by tissue engineers, to understand how the complex cellular microenvironment directs vascular cell behavior and functionality. In this review, the essence of microfluidic technology and transport phenomenon that make them unique for vascular tissue engineering will be briefly introduced. The main scope of this review is to expose how new and innovative microfluidic fabrication techniques are being utilized for exciting applications that have allowed insight into the spatio/temporal dynamics of vascular cell behavior. Specifically, microfluidic devices which range in functionality from simultaneously controlling oxygen and shear stress levels to perfusable biopolymer networks, will be discussed in the context of how they bolster traditional platforms, by providing greater data output, accessibility, and physiological relevance.
组织工程构建体的血管化需要通过厚实且细胞密集的网络来运输氧气、营养物质和废物,这继续阻碍了该技术在解决供体器官短缺危机方面的成功。微流控技术已成为组织工程师使用的传统平台的可行替代方案,用于了解复杂的细胞微环境如何指导血管细胞的行为和功能。在这篇综述中,将简要介绍微流控技术的本质以及使其在血管组织工程中独树一帜的传输现象。本综述的主要范围是揭示新的和创新的微流控制造技术如何被用于令人兴奋的应用中,这些应用能够洞察血管细胞行为的时空动态。具体而言,将在微流控设备如何通过提供更多数据输出、可及性和生理相关性来支持传统平台的背景下,讨论功能从同时控制氧气和剪切应力水平到可灌注生物聚合物网络不等的微流控设备。