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用于电场梯度聚焦的聚乙二醇功能化器件。

Poly(ethylene glycol)-functionalized devices for electric field gradient focusing.

作者信息

Sun Xuefei, Farnsworth Paul B, Woolley Adam T, Tolley H Dennis, Warnick Karl F, Lee Milton L

机构信息

Department of Chemistry and Biochemistry, Brigham Young University, Provo, Utah 84602, USA.

出版信息

Anal Chem. 2008 Jan 15;80(2):451-60. doi: 10.1021/ac0713104. Epub 2007 Dec 15.

Abstract

Electric field gradient focusing (EFGF) is an equilibrium gradient focusing technique that depends on an electric field gradient and a hydrodynamic counterflow to focus, concentrate, and separate charged analytes. In this work, EFGF devices were fabricated from poly(ethylene glycol) (PEG)-functionalized acrylic plastic. The separation channel was formed in an ionically conductive and protein-resistant PEG-functionalized hydrogel, which was cast in a changing cross-sectional cavity in the plastic device. A linear electric field gradient was obtained by applying a voltage lengthwise across the shaped hydrogel. Standard proteins were used as analytes to demonstrate the performance of these EFGF devices. With an increase in counterflow rate or decrease in applied voltage, analyte bands broadened, but resolution increased in agreement with theory. To reduce analyte band dispersion and improve focusing performance, a protein-compatible PEG-functionalized monolith was incorporated in the EFGF channel. Compared with focusing in an open channel, protein bands in the monolith-filled EFGF channel were significantly narrower.

摘要

电场梯度聚焦(EFGF)是一种平衡梯度聚焦技术,它依赖于电场梯度和流体动力逆流来聚焦、浓缩和分离带电分析物。在这项工作中,EFGF装置由聚乙二醇(PEG)功能化的丙烯酸塑料制成。分离通道形成于离子导电且抗蛋白质的PEG功能化水凝胶中,该水凝胶浇铸在塑料装置中不断变化的横截面腔内。通过在成型水凝胶上纵向施加电压获得线性电场梯度。使用标准蛋白质作为分析物来证明这些EFGF装置的性能。随着逆流速率的增加或施加电压的降低,分析物带变宽,但分辨率如理论预期那样增加。为了减少分析物带的分散并提高聚焦性能,在EFGF通道中加入了与蛋白质兼容的PEG功能化整体柱。与在开放通道中的聚焦相比,填充有整体柱的EFGF通道中的蛋白质带明显更窄。

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