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Development and Characterization of a Capillary Gap Sampler as New Microfluidic Device for Fast and Direct Analysis of Low Sample Amounts by ESI-MS

机译:毛细管间隙进样器的开发和表征,作为新型微流体装置,可通过ESI-MS快速直接分析低样品量

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摘要

Direct hyphenation of miniaturized sampling devices to electrospray ionization-mass spectrometry (ESI-MS) is attractive because ESI-MS is compatible with microfluidics and allows comprehensive sample analysis, yielding information that is orthogonal to that available from optical methods. We present a "capillary gap sampler" as a platform for directly connecting microfluidics to μ-ESI-MS. The sampler was designed to be robust, light and compact, and to allow precise and fast liquid handling. Sample introduction in the range of a few nanoliters is performed via an open liquid bridge as a new microfluidic element. This allows minimum contact of the sample with system surfaces during the infusion process. The system shows good performance characteristics such as symmetrical peak shapes, low sample carryover (below 1%), and total injection cycle times of less than 15 s. This new device thus has the potential for rapid analysis of biomedical and pharmaceutical samples with limited sample amounts in a high-throughput mode.
机译:微型采样设备直接连接到电喷雾电离质谱(ESI-MS)上很有吸引力,因为ESI-MS与微流体兼容并且可以进行全面的样品分析,从而产生与光学方法正交的信息。我们提出了“毛细管间隙采样器”作为直接将微流体连接到μ-ESI-MS的平台。该进样器设计坚固,轻巧,紧凑,可进行精确,快速的液体处理。通过开放式液桥作为新的微流控元件,可进行几纳升范围的样品引入。这样可以在输液过程中使样品与系统表面的接触最少。该系统具有良好的性能特征,例如对称的峰形,低的样品残留(低于1%)以及总进样时间少于15 s。因此,这种新设备具有以高通量模式快速分析样品数量有限的生物医学和药学样品的潜力。

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