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首页> 外文期刊>Analytical chemistry >Adsorption-Resistant Acrylic Copolymer for Prototyping of Microfluidic Devices for Proteins and Peptides
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Adsorption-Resistant Acrylic Copolymer for Prototyping of Microfluidic Devices for Proteins and Peptides

机译:用于蛋白质和多肽微流控装置原型的抗吸附丙烯酸共聚物

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A poly(ethylene glycol)-functionalized acrylic copolymerwas developed for fabrication of microfluidic devices that are resistant to protein and peptide adsorption. Planar microcapillary electrophoresis ((mu)CE) devices were fabricated from this copolymer with the typical cross pattern to facilitate sample introduction. In contrast to most methods used to fabricate polymeric microchips, the photopolymerization-based method used with the copolymer reported in this work was of the soft lithography type, and both patterning and bonding could be completed within 10 min. In a finished microdevice, the cover plate and patterned substrate were bonded together through strong covalent bonds. Additionally, because of the resistance of the copolymer to adsorption, fabricated microfluidic devices could be used without surface modification to separate proteins and peptides. Separations of fluorescein isothiocyanate-labeled protein and peptide samples were accomplished using these new polymeric (mu)CE microchips. Separation efficiencies as high as 4.7 X 10~(4) plates were obtained in less than 40 s with a 3.5-cm separation channel, yielding peptide and protein peaks that were symmetrical.
机译:开发了一种聚(乙二醇)-官能化的丙烯酸共聚物,用于制造抗蛋白质和肽吸附的微流体装置。平面微毛细管电泳(μCE)器件是由这种具有典型十字图案的共聚物制成的,以便于引入样品。与大多数用于制造聚合物微芯片的方法相比,这项工作中报道的与共聚物一起使用的基于光聚合的方法属于软光刻技术,图案化和键合均可在10分钟内完成。在完成的微型设备中,盖板和带图案的基板通过牢固的共价键结合在一起。另外,由于共聚物对吸附的抵抗力,可以使用制造的微流体装置而无需进行表面修饰来分离蛋白质和肽。荧光素异硫氰酸酯标记的蛋白质和多肽样品的分离是通过使用这些新型的聚合CE微芯片完成的。在不到40 s的时间内,通过3.5厘米的分离通道,分离效率高达4.7 X 10〜(4)板,产生对称的肽和蛋白质峰。

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