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基于聚二甲基硅氧烷的微芯片,用于二维固相萃取-毛细管电泳,并带有集成电喷雾发射器尖端。

Poly(dimethylsiloxane)-based microchip for two-dimensional solid-phase extraction-capillary electrophoresis with an integrated electrospray emitter tip.

作者信息

Dahlin Andreas P, Bergström Sara K, Andrén Per E, Markides Karin E, Bergquist Jonas

机构信息

Department of Analytical Chemistry, Uppsala University, P.O. Box 599, 751 24 Uppsala, Sweden.

出版信息

Anal Chem. 2005 Aug 15;77(16):5356-63. doi: 10.1021/ac050495g.

Abstract

A microchip in poly(dimethylsiloxane) (PDMS) for in-line solid-phase extraction-capillary electrophoresis-electrospray ionization-time-of-flight mass spectrometry (SPE-CE-ESI-TOF-MS) has been developed and evaluated. The chip was fabricated in a novel one-step procedure where mixed PDMS was cast over steel wires in a mold. The removed wires defined 50-microm cylindrical channels. Fused-silica capillaries were inserted into the structure in a tight fit connection. The inner walls of the inserted fused-silica capillaries and the PDMS microchip channels were modified with a positively charged polymer, PolyE-323. The chip was fabricated in a two-level cross design. The channel at the lower level was packed with 5-microm hyper-cross-linked polystyrene beads acting as a SPE medium used for desalting. The upper level channel acted as a CE channel and ended in an integrated emitter tip coated with conducting graphite powder to facilitate the electrical contact for sheathless ESI. An overpressure continuously provided fresh CE electrolyte independently of the flows in the different levels. Further studies were carried out in order to investigate the electrophoretic and flow rate properties of the chip. Finally, six-peptide mixtures, in different concentrations, dissolved in physiological salt solution was injected, desalted, separated, and sprayed into the mass spectrometer for analysis with a limit of detection in femtomole levels.

摘要

一种用于在线固相萃取-毛细管电泳-电喷雾电离-飞行时间质谱(SPE-CE-ESI-TOF-MS)的聚二甲基硅氧烷(PDMS)微芯片已被开发并评估。该芯片采用一种新颖的一步法制造,将混合的PDMS浇铸在模具中的钢丝上。移除钢丝后形成了50微米的圆柱形通道。将熔融石英毛细管紧密配合地插入该结构中。插入的熔融石英毛细管内壁和PDMS微芯片通道用带正电荷的聚合物PolyE-323进行了修饰。芯片采用两级交叉设计。下层通道填充有5微米的超交联聚苯乙烯珠,用作脱盐的SPE介质。上层通道用作CE通道,并在末端集成了涂有导电石墨粉的发射尖端,以促进无鞘ESI的电接触。过压独立于不同层中的流动持续提供新鲜的CE电解质。为了研究芯片的电泳和流速特性,进行了进一步的研究。最后,将溶解在生理盐溶液中的不同浓度的六种肽混合物注入、脱盐、分离并喷入质谱仪进行分析,检测限达到飞摩尔水平。

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