首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >RAPID PROTOTYPING OF PDMS DEVICES WITH APPLICATIONS TO PROTEIN CRYSTALLIZATION
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RAPID PROTOTYPING OF PDMS DEVICES WITH APPLICATIONS TO PROTEIN CRYSTALLIZATION

机译:PDMS设备的快速原型设计及其在蛋白质结晶中的应用

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This paper describes a microfabrication process for constructing three-dimensional microfluidic structures in polydimethylsiloxane (PDMS). Rapid prototyping of microfluidic devices is possible starting from ink-jet printed masks and by utilising replica molding to create fluidic structures in PDMS from SU-8 and SPR-220 masters pre-patterned on a silicon or glass substrate. Multi-layer bonded and stacked alignment of up to 13 different functional polymer microfluidic layers with through-layer fluidic interconnects has been demonstrated. Pneumatically actuated valves have also been demonstrated for the regulation of sub-10 nL of fluid volumes. The geometric design of the valves is described with experimental verification conducted on rounded and vertical channel profiles to examine the effects of channel geometry on valve leak rates. The PDMS-based technology allows for the fabrication of devices with extremely small reaction volumes and parallel sample processing, making these devices ideally suited to applications which require high throughput processing and the ability to conduct parallel assays with very limited volumes of reagent and sample. We describe the applications of this technology to protein crystallization in particular.
机译:本文介绍了一种在聚二甲基硅氧烷(PDMS)中构建三维微流体结构的微细加工工艺。从喷墨印刷的掩模开始,并通过利用复制模制从预先在硅或玻璃基板上构图的SU-8和SPR-220母板在PDMS中创建流体结构,可以对微流体设备进行快速原型设计。已经证明了多达13个不同的功能聚合物微流体层具有贯穿层流体互连的多层粘合和堆叠排列。气动阀也已被证明可调节低于10 nL的流体量。通过对圆形和垂直通道轮廓进行实验验证来描述阀门的几何设计,以检查通道几何形状对阀门泄漏率的影响。基于PDMS的技术允许制造反应体积极小的设备,并进行平行样品处理,从而使这些设备非常适合需要高通量处理且能够使用非常有限的试剂和样品进行平行测定的应用。我们特别描述了该技术在蛋白质结晶中的应用。

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