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Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane)

机译:聚二甲基硅氧烷中微流体系统的快速原型

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This paper describes a procedure that makes it possible to design and fabricate (including sealing) microfluidic systems in an elastomeric material-poly(dimethylsiloxane) (PDMS)--in less than 24 h. A network of microfluidic channels (with width >20μm) is designed in a CAD program. This design is converted into a transparency by a high-resolution printer; this transparency is used as a mask in photolithography to create a master in positive relief photoresist. PDMS cast against the master yields a polymeric replica containing a network of channels. The surface of this replica, and that of a flat slab of PDMS, are oxidized in an oxygen plasma. These oxidized surfaces seal tightly and irreversibly when brought into conformal contact. Oxidized PDMS also seals irreversibly to other materials used in microfluidic systems, such as glass, silicon, silicon oxide, and oxidized polystyrene; a number of substrates for devices are, therefore, practical options. Oxidation of the PDMS has the additional advantage that it yields channels whose walls are negatively charged when in contact with neutral and basic aqueous solutions; these channels support electroosmotic pumping and can be filled easily with liquids with high surface energies (especially water). The performance of microfluidic systems prepared using this rapid prototyping technique has been evaluated by fabricating a miniaturized capillary electrophoresis system. Amino acids, charge ladders of positively and negatively charged proteins, and DNA fragments were separated in aqueous solutions with this system with resolution comparable to that obtained using fused silica capillaries.
机译:本文介绍了一种程序,该程序使得在不到24小时的时间内即可在弹性体材料-聚二甲基硅氧烷(PDMS)中设计和制造(包括密封)微流体系统。在CAD程序中设计了微流体通道网络(宽度>20μm)。高分辨率打印机将这种设计转换为透明胶片。这种透明性在光刻中用作掩模,以在正浮雕光刻胶中创建母版。靠母版铸造的PDMS产生了包含通道网络的聚合物复制品。该复制品的表面以及PDMS平板的表面在氧等离子体中被氧化。这些氧化的表面在进行共形接触时紧密且不可逆地密封。氧化的PDMS还不可逆地密封微流系统中使用的其他材料,例如玻璃,硅,氧化硅和氧化的聚苯乙烯;因此,许多用于设备的衬底是实际的选择。 PDMS的氧化还具有另一个优势,即与中性和碱性水溶液接触时,其通道壁带负电。这些通道支持电渗泵送,并且可以轻松填充具有高表面能的液体(尤其是水)。使用这种快速原型技术制备的微流控系统的性能已通过制造小型毛细管电泳系统进行了评估。用该系统在水溶液中分离氨基酸,带正电荷和带负电荷的蛋白质的电荷阶梯以及DNA片段,其分辨率与使用熔融石英毛细管获得的分辨率相当。

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