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Electrophoretic Extraction of Low Molecular Weight Cationic Analytes from Sodium Dodecyl Sulfate Containing Sample Matrices for Their Direct Electrospray Ionization Mass Spectrometry

机译:从含有十二烷基硫酸钠的样品基质中通过电泳萃取低分子量阳离子分析物进行直接电喷雾电离质谱

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摘要

While the use of sodium dodecyl sulfate (SDS) in separation buffers allows efficient analysis of complex mixtures, its presence in the sample matrix is known to severely interfere with the mass-spectrometric characterization of analyte molecules. In this article, we report a microfluidic device that addresses this analytical challenge by enabling inline electrospray ionization mass spectrometry (ESI-MS) of low molecular weight cationic samples prepared in SDS containing matrices. The functionality of this device relies on the continuous extraction of analyte molecules into an SDS-free solvent stream based on the free-flow zone electrophoresis (FFZE) technique prior to their ESI-MS analysis. The reported extraction was accomplished in our current work in a glass channel with microelectrodes fabricated along its sidewalls to realize the desired electric field. Our experiments show that a key challenge to successfully operating such a device is to suppress the electroosmotically driven fluid circulations generated in its extraction channel that otherwise tend to vigorously mix the liquid streams flowing through this duct. A new coating medium, N-(2-triethoxysilylpropyl) formamide, recently demonstrated by our laboratory to nearly eliminate electroosmotic flow in glass microchannels was employed to address this issue. Applying this surface modifier, we were able to efficiently extract two different peptides, human angiotensin I and MRFA, individually from an SDS containing matrix using the FFZE method and detect them at concentrations down to 3.7 and 6.3 µg/mL, respectively, in samples containing as much as 10 mM SDS. Notice that in addition to greatly reducing the amount of SDS entering the MS instrument, the reported approach allows rapid solvent exchange for facilitating efficient analyte ionization desired in ESI-MS analysis.
机译:尽管在分离缓冲液中使用十二烷基硫酸钠(SDS)可以有效分析复杂的混合物,但已知其在样品基质中的存在会严重干扰分析物分子的质谱表征。在本文中,我们报告了一种微流体设备,该设备通过启用在包含基质的SDS中制备的低分子量阳离子样品的在线电喷雾电离质谱(ESI-MS),解决了这一分析难题。该设备的功能依赖于在进行ESI-MS分析之前,基于自由流动区电泳(FFZE)技术将分析物分子连续提取到无SDS的溶剂流中。报道的提取是在我们当前的工作中在玻璃通道中完成的,该通道具有沿其侧壁制造的微电极以实现所需的电场。我们的实验表明,成功操作这种设备的关键挑战是抑制在其提取通道中产生的电渗驱动流体循环,否则该循环往往会剧烈混合流经此导管的液体流。我们实验室最近证明了一种新的涂覆介质N-(2-三乙氧基甲硅烷基丙基)甲酰胺几乎消除了玻璃微通道中的电渗流,从而解决了这一问题。应用这种表面修饰剂,我们能够使用FFZE方法从含SDS的基质中分别有效提取两种不同的肽,即人血管紧张素I和MRFA,并分别在含有3.7 mg和6.3 µg / mL的低浓度样品中进行检测。高达10 mM的SDS。请注意,除了大大减少进入MS仪器的SDS数量外,报告的方法还允许快速交换溶剂,以促进ESI-MS分析中所需的有效分析物电离。

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