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采用集成电喷雾发射器的微芯片上的样品预处理。

Sample pretreatment on a microchip with an integrated electrospray emitter.

作者信息

Lindberg Peter, Dahlin Andreas P, Bergström Sara K, Thorslund Sara, Andrén Per E, Nikolajeff Fredrik, Bergquist Jonas

机构信息

Department of Analytical Chemistry, Uppsala University, Sweden.

出版信息

Electrophoresis. 2006 Jun;27(11):2075-82. doi: 10.1002/elps.200500763.

Abstract

This study presents a microbead-packed PDMS microchip with an integrated electrospray emitter for sample pretreatment prior to sheathless ESI-MS. We prove the concept of analytical functions integrated onto a cm-sized area of a single bulk material. The microchip consists of two PDMS substrates replicated from SU-8 fabricated silicon wafer masters, bonded together after oxidation by corona discharge treatment. The channel within the microchip contains a grid structure that was used to trap 5 microm hypercross-linked polystyrene beads. The beads acted as a medium for sample desalting and enrichment. Electrical contact for the sheathless ESI process was achieved by coating the integrated emitter with conductive graphite powder after applying a thin layer of PDMS as glue. The coating as well as the bond of the PDMS structures showed excellent durability. A continuous spray was obtained from the microchip for over 800 h in a long-term electrospray stability experiment. Desalting and enrichment of neuropeptides from a physiological salt solution was successful by loading the sample onto the packed beads, followed by a washing and an eluting step. The results were obtained and evaluated using a TOF MS. An LOD of approximately 20 fmol (loaded onto the beads) for angiotensin II was obtained from a sample of neuropeptides dissolved in physiological salt solution.

摘要

本研究展示了一种带有集成电喷雾发射器的微珠填充聚二甲基硅氧烷(PDMS)微芯片,用于在无鞘电喷雾电离质谱(ESI-MS)之前进行样品预处理。我们证明了将分析功能集成到单个块状材料的厘米级区域上的概念。该微芯片由两个从SU-8制造的硅晶圆母版复制而来的PDMS基板组成,在通过电晕放电处理氧化后粘结在一起。微芯片内的通道包含一个网格结构,用于捕获5微米的超交联聚苯乙烯珠。这些珠子用作样品脱盐和富集的介质。在涂覆一层薄的PDMS作为胶水后,通过用导电石墨粉涂覆集成发射器来实现无鞘ESI过程的电接触。PDMS结构的涂层以及粘结显示出优异的耐久性。在长期电喷雾稳定性实验中,从微芯片获得了超过800小时的连续喷雾。通过将样品加载到填充的珠子上,然后进行洗涤和洗脱步骤,成功地从生理盐溶液中脱盐和富集了神经肽。使用飞行时间质谱(TOF MS)获得并评估了结果。从溶解在生理盐溶液中的神经肽样品中获得了血管紧张素II的约20飞摩尔(加载到珠子上)的检测限。

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