Kameoka J, Craighead H G, Zhang H, Henion J
School of Applied and Engineering Physics, Cornell University, Ithaca, New York 14853, USA.
Anal Chem. 2001 May 1;73(9):1935-41. doi: 10.1021/ac001533t.
A polymeric microfluidic chip made of Zeonor 1020 was fabricated using conventional embossing techniques to perform capillary electrophoresis for selected ion monitoring and selected reaction monitoring mass spectrometric detection of small molecules. A silicon master was microfabricated using photolithographic and dry etching processes. The microfluidic channel was embossed in the plastic from a silicon master. The embossed chip was thermally bonded with a Zeonor 1020 cover to form an enclosed channel. This channel (60-microm width, 20-microm depth, 2.0- and 3.5-cm length) provided capillary electrophoresis (CE) separation of polar small molecules without surface treatment of the polymer. A microsprayer coupled via a microliquid junction provided direct electrospray mass spectrometric detection of CE-separated components. An electric field of 0.5-2 kV/cm applied between the microsprayer and a separation buffer reservoir produced a separation of carnitine, acylcarnitine, and butylcarnitine with separation efficiencies ranging from 1,650 to 18,000 plates. Injection quantities of 0.2 nmol of these compounds produced a separation of the targeted polar small molecules without surface treatment of the polymer-abundant ion current signals and baseline separation of these compounds in less than 10 s. These results suggest the feasibility of polymeric chip-based devices for ion spray CE/MS applications.
采用传统压印技术制造了由Zeonor 1020制成的聚合物微流控芯片,用于对小分子进行毛细管电泳以进行选定离子监测和选定反应监测质谱检测。使用光刻和干法蚀刻工艺对硅母版进行微加工。微流控通道由硅母版在塑料中压印而成。压印芯片与Zeonor 1020盖热键合形成封闭通道。该通道(宽度60微米、深度20微米、长度2.0厘米和3.5厘米)无需对聚合物进行表面处理即可对极性小分子进行毛细管电泳(CE)分离。通过微液接耦合的微喷雾器对CE分离的组分进行直接电喷雾质谱检测。在微喷雾器和分离缓冲液储液器之间施加0.5-2 kV/cm的电场,可实现肉碱、酰基肉碱和丁基肉碱的分离,分离效率为1650至18000塔板数。注入0.2 nmol这些化合物,无需对聚合物进行表面处理即可实现目标极性小分子的分离——产生丰富的离子电流信号,并在不到10秒内实现这些化合物的基线分离。这些结果表明了基于聚合物芯片的装置用于离子喷雾CE/MS应用的可行性。