Micheal Issac J, Vidyasagar Aditya J, Bokara Kiran Kumar, Mekala Naveen Kumar, Asthana Amit, Rao Ch Mohan
CSIR - Centre for Cellular & Molecular Biology, Habsiguda, Uppal Road, Hyderabad - 500 007, Telangana, India.
Lab Chip. 2014 Oct 7;14(19):3695-9. doi: 10.1039/c4lc00659c.
We present a simple, rapid, benchtop, Foil Assisted Rapid Molding (FARM) method for the fabrication of microfluidic devices. This novel technique involves the use of aluminium foil, pen and an X-Y plotter to create semi-circular or plano-concave, shallow microchannels. It is an easy do-it-yourself (DIY) technique for creating a microfluidic device in three simple steps: (1) create a channel design using the CAD software, (2) plot the patterns on aluminium foil and (3) use the reverse of the engraved foil as a mold to create microfluidic devices. In this report, we present a detailed study of the proposed method by varying a range of parameters such as foil thickness, tip material, and tip sizes and by investigating their effect on the creation of channels with varying geometry. Furthermore, we demonstrated the cytocompatibility of these devices in vitro.
我们展示了一种用于制造微流控设备的简单、快速、台式的箔辅助快速成型(FARM)方法。这项新技术涉及使用铝箔、笔和XY绘图仪来创建半圆形或平凹形的浅微通道。这是一种简单的自己动手(DIY)技术,只需三个简单步骤即可创建微流控设备:(1)使用CAD软件创建通道设计,(2)在铝箔上绘制图案,(3)使用雕刻箔的反面作为模具来创建微流控设备。在本报告中,我们通过改变一系列参数,如箔厚度、尖端材料和尖端尺寸,并研究它们对创建不同几何形状通道的影响,对所提出的方法进行了详细研究。此外,我们在体外证明了这些设备的细胞相容性。