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用于生成各种特性梯度场及生物应用的微平台。

Microplatforms for gradient field generation of various properties and biological applications.

作者信息

Kim Sung-Hwan, Lee Gi-Hun, Park Joong Yull, Lee Sang-Hoon

机构信息

School of Mechanical Engineering, College of Engineering, Chung-Ang University, Seoul, Republic of Korea.

Department of Biomedical Engineering, College of Health Science, Korea University, Seoul, Republic of Korea

出版信息

J Lab Autom. 2015 Apr;20(2):82-95. doi: 10.1177/2211068214562247. Epub 2014 Dec 15.

Abstract

Well-designed microfluidic platforms can be excellent tools to eliminate bottleneck problems or issues that have arisen in biological fields by providing unprecedented high-resolution control of mechanical and chemical microenvironments for cell culture. Among such microtechnologies, the precise generation of biochemical concentration gradients has been highly regarded in the biorelated scientific fields; even today, the principles and mechanisms for gradient generation continue to be refined, and the number of applications for this technique is growing. Here, we review the current status of the concentration gradient generation technologies achieved in various microplatforms and how they have been and will be applied to biological issues, particularly those that have arisen from cancer research, stem cell research, and tissue engineering. We also provide information about the advances and future challenges in the technological aspects of microscale concentration gradient generation.

摘要

设计精良的微流控平台可以成为出色的工具,通过为细胞培养提供前所未有的对机械和化学微环境的高分辨率控制,来消除生物领域中出现的瓶颈问题。在这类微技术中,生化浓度梯度的精确生成在生物相关科学领域备受关注;即使在今天,梯度生成的原理和机制仍在不断完善,并且这项技术的应用数量也在不断增加。在此,我们回顾了各种微平台中浓度梯度生成技术的现状,以及它们已经如何并将如何应用于生物学问题,特别是那些源于癌症研究、干细胞研究和组织工程的问题。我们还提供了关于微尺度浓度梯度生成技术方面的进展和未来挑战的信息。

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