Single molecule and cell manipulation in soft microfluidic devices

S. Quake
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Abstract

Summary form only given as follows: We have been using soft lithography to make microfluidic chips for ultrasensitive analysis of single DNA molecules and cells. There are numerous advantages to fabricating chips out of polymeric materials, and as a result we have been able to rapidly and inexpensively fabricate active devices with moving parts, such as pinch valves and peristaltic pumps. We have also developed a microfabricated flow cytometry chip as a replacement for analytical pulsed field gel electrophoresis. Assays with these chips are two orders of magnitude faster than pulsed field gels and use a million times less material. Because they are detecting single molecules, their sensitivity is comparable to PCR based techniques. We have also developed a microfabricated fluorescence activated cell sorter and demonstrated its use in screening bacterial cells. The novel valve and pump components for on-chip fluidic manipulation that we developed in the course of this research will be useful for fabricating more complex chip designs for a variety of biotechnological applications.
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软微流体装置中的单分子和细胞操作
我们一直在使用软光刻技术制作微流控芯片,用于对单个DNA分子和细胞的超灵敏分析。用聚合物材料制造芯片有许多优点,因此我们能够快速而廉价地制造带有活动部件的有源设备,如夹管阀和蠕动泵。我们还开发了一种微加工流式细胞仪芯片,作为分析脉冲场凝胶电泳的替代品。使用这些芯片的检测比脉冲场凝胶快两个数量级,使用的材料少一百万倍。因为它们检测的是单分子,所以它们的灵敏度与基于PCR的技术相当。我们还开发了一种微合成荧光激活细胞分选器,并演示了其在筛选细菌细胞中的应用。我们在本研究过程中开发的用于片上流体操纵的新型阀和泵组件将有助于为各种生物技术应用制造更复杂的芯片设计。
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