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用于质谱分析的全微制造集成式基于SU-8的毛细管电泳-电喷雾电离微芯片

Fully microfabricated and integrated SU-8-based capillary electrophoresis-electrospray ionization microchips for mass spectrometry.

作者信息

Sikanen Tiina, Tuomikoski Santeri, Ketola Raimo A, Kostiainen Risto, Franssila Sami, Kotiaho Tapio

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, P.O. Box 55, FI-00014 University of Helsinki, Finland.

出版信息

Anal Chem. 2007 Dec 1;79(23):9135-44. doi: 10.1021/ac071531+. Epub 2007 Oct 31.

Abstract

We present a fully microfabricated and monolithically integrated capillary electrophoresis (CE)-electrospray ionization (ESI) chip for coupling with high-throughput mass spectrometric (MS) analysis. The chips are fabricated fully of a negative photoresist SU-8 by a standard lithographic process which enables straightforward batch fabrication of multiple chips with precisely controlled dimensions and, thus, reproducible analytical performance from chip to chip. As the coaxial sheath flow interface is patterned as an integral part of the SU-8 chip, the fluidic design is dead-volume-free. No significant peak broadening occurs so that very narrow peak widths (down to 2-3 s) are obtained. The sheath flow interface also enables comprehensive optimization of both the CE and the ESI conditions separately so that the same chip design is adaptable to diverse analytical conditions. Plate numbers of the order of 105 m-1 and good resolution are routinely reached for small molecules and peptides within a 2 cm separation length and a typical cycle time of only 30-90 s per sample. In addition, a limit of detection of 100 nM corresponding to a total amount of only 4.5 amol (per injection volume of 45 pL) and excellent quantitative linearity (R2 = 0.9999; 100 nM to 100 microM) were obtained in small-molecule analysis using verapamil as a test compound. The quantitative repeatability was proven good (8.5-21.4% relative standard deviation, peak area) also for the other drug substances and peptides tested.

摘要

我们展示了一种完全微制造且单片集成的毛细管电泳(CE)-电喷雾电离(ESI)芯片,用于与高通量质谱(MS)分析联用。这些芯片完全由负性光刻胶SU-8通过标准光刻工艺制造,该工艺能够直接批量制造多个尺寸精确可控的芯片,从而实现芯片间可重复的分析性能。由于同轴鞘流接口被图案化为SU-8芯片的一个整体部分,流体设计无死体积。不会出现明显的峰展宽,因此可获得非常窄的峰宽(低至2 - 3秒)。鞘流接口还能分别对CE和ESI条件进行全面优化,使得相同的芯片设计能适应多种分析条件。对于小分子和肽类,在2厘米的分离长度和每个样品仅30 - 90秒的典型循环时间内,常规可达到105 m-1量级的塔板数和良好的分辨率。此外,使用维拉帕米作为测试化合物进行小分子分析时,检测限为100 nM,对应总量仅为4.5 amol(每次进样体积为45 pL),并且获得了出色的定量线性(R2 = 0.9999;100 nM至100 microM)。对于测试的其他药物和肽类,定量重复性也被证明良好(相对标准偏差,峰面积为8.5 - 21.4%)。

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