Chow Andrea W
Microfluidics Research and Development, Caliper Life Sciences, Mountain View, CA, USA.
Methods Mol Biol. 2006;339:129-44. doi: 10.1385/1-59745-076-6:129.
The use of two types of commercialized microfluidic chips for separation of double-stranded DNA (dsDNA), suitable for personal scale and high throughput use, is described. Compared with conventional approaches such as slab-gel and capillary electrophoresis (CE), these devices offer the advantages of faster separation times, better data reproducibility, greater ease of use, labor savings in quantitative analysis, and ease in data archiving and data sharing owing to the digital data format. With some simple precautions taken in keeping bubbles and particulates out of the microchannels, Lab-on-a-Chip devices have been adopted by many researchers in molecular biology and genomics laboratories to increase their productivity.
本文描述了两种适用于个人规模和高通量使用的商业化微流控芯片用于双链DNA(dsDNA)分离的情况。与传统方法如平板凝胶电泳和毛细管电泳(CE)相比,这些设备具有分离时间更快、数据重现性更好、使用更简便、定量分析节省人力以及由于数字数据格式便于数据存档和共享等优点。在采取一些简单预防措施防止气泡和颗粒进入微通道的情况下,许多分子生物学和基因组学实验室的研究人员已采用芯片实验室设备来提高其工作效率。