Zhang Chi, van Noort Danny
Division of Nanobiotechnology, AlbaNova University Center, Royal Institute of Technology, Stockholm, Sweden.
Top Curr Chem. 2011;304:295-321. doi: 10.1007/128_2011_147.
Microfluidic devices offer a realistic environment for cell cultures as it is related to scales found in biological systems. The aim is to create more in vivo like systems, in comparison to 2D plate cultures. Creating 3D cell culture constructs increase the cell's functionality. By controlling the microenvironment (e.g., cell matrix, flow rate, temperature) cell functionality can be increased even more. As microfluidic devices allow for precise control of the microenvironment, they are a paramount tool to study stem cells and their differentiation caused by external factors. We will give an overview of the use of microfluidic devices for some biological problems, and especially as a cell culture platforms. We focus on 3D cell cultures and stem cells and their microenvironment.
微流控设备为细胞培养提供了一个逼真的环境,因为它与生物系统中的尺度相关。与二维平板培养相比,其目的是创建更类似体内的系统。创建三维细胞培养构建体可增强细胞功能。通过控制微环境(例如细胞基质、流速、温度),细胞功能可得到进一步增强。由于微流控设备能够精确控制微环境,它们是研究干细胞及其由外部因素引起的分化的至关重要的工具。我们将概述微流控设备在一些生物学问题中的应用,尤其是作为细胞培养平台的应用。我们关注三维细胞培养、干细胞及其微环境。