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Microfluidic arrays of fluid-fluid diffusional contacts as detection elements and combinatorial tools

机译:流体-流体扩散接触的微流体阵列作为检测元件和组合工具

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This paper describes microfluidic systems that can be used to investigate multiple chemical or biochemical interactions in a parallel format. These three-dimensional systems are generated by crossing two sets of microfluidic channels, fabricated in two different layers, at tight angles. Solutions of the reagents are placed in the channels; in different modes of operation, these solutions can be either flowing or stationary-the latter is important when one set of channels is filled with viscous gels with immobilized reagents. At every crossing, the channels are separated either by a single membrane or by a composite separator comprising a membrane, a microwell, and a second membrane. These components allow diffusive mass transport and minimize convective transport through the crossing. Polycarbonate membranes with 0.1-1-mum vertical pores were used to fabricate the devices. Each crossing of parallel channels serves as an element in which chemical or biochemical interactions can take place; interactions can be detected by monitoring changes in fluorescence and absorbance. These all-organic systems are straightforward to fabricate and to operate and may find applications as portable microanalytical systems and as tools in combinatorial research.
机译:本文介绍了可用于研究平行形式的多个化学或生化相互作用的微流体系统。这些三维系统是通过将两组微流体通道(以两个不同的层制造)以小角度交叉而产生的。试剂溶液放置在通道中;在不同的操作模式下,这些溶液可以是流动的,也可以是固定的。当一组通道中充满固定化试剂的粘性凝胶时,后者很重要。在每个交叉处,通道通过单个膜或由包括膜,微孔和第二膜的复合分离器分隔。这些组件允许扩散质量传输,并使通过对流的对流传输最小化。具有0.1-1微米垂直孔的聚碳酸酯膜用于制造该装置。平行通道的每个交叉点都可以作为其中发生化学或生化相互作用的元素。可以通过监测荧光和吸光度的变化来检测相互作用。这些全有机系统易于制造和操作,并且可以作为便携式微分析系统和组合研究的工具找到应用程序。

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