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液相微连接表面采样探头流体动力学:分析物塞形成操作模式的表征和应用。

Liquid microjunction surface sampling probe fluid dynamics: characterization and application of an analyte plug formation operational mode.

机构信息

Organic and Biological Mass Spectrometry Group, Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831-6131, USA.

出版信息

J Am Soc Mass Spectrom. 2011 Oct;22(10):1737-43. doi: 10.1007/s13361-011-0209-6. Epub 2011 Aug 10.

Abstract

The recently discovered sample plug formation and injection operational mode of a continuous flow, coaxial tube geometry, liquid microjunction surface sampling probe (LMJ-SSP) was further characterized and applied for concentration and mixing of analyte extracted from multiple areas on a surface and for nanoliter-scale chemical reactions of sampled material. A transparent LMJ-SSP was constructed and colored analytes were used so that the surface sampling process, plug formation, and the chemical reactions could be visually monitored at the sampling end of the probe before being analyzed by mass spectrometry of the injected sample plug. Injection plug peak widths were consistent for plug hold times as long as the 8 min maximum attempted (RSD below 1.5%). Furthermore, integrated injection peak signals were not significantly different for the range of hold times investigated. The ability to extract and completely mix individual samples within a fixed volume at the sampling end of the probe was demonstrated and a linear mass spectral response to the number of equivalent analyte spots sampled was observed. Using the color and mass changing chemical reduction of the redox dye 2,6-dichlorophenol-indophenol with ascorbic acid, the ability to sample, concentrate, and efficiently run reactions within the same plug volume within the probe was demonstrated.

摘要

最近发现的连续流动同轴管几何形状的液体微连接表面采样探针 (LMJ-SSP) 的样品塞形成和注入操作模式进一步得到了表征,并应用于从表面多个区域提取的分析物的浓缩和混合,以及用于被采样材料的纳升级化学反应。构建了一个透明的 LMJ-SSP,并使用有色分析物,以便在通过质谱分析注入的样品塞之前,可以在探针的采样端对表面采样过程、塞形成和化学反应进行可视化监测。只要尝试的最长时间为 8 分钟(RSD 低于 1.5%),则塞保持时间的注入塞峰宽保持一致。此外,对于所研究的保持时间范围,集成的注入峰信号没有明显差异。在探针的采样端,能够在固定体积内提取和完全混合单个样品的能力得到了证明,并观察到对采样的等效分析物斑点数量的线性质谱响应。使用氧化还原染料 2,6-二氯苯酚靛酚与抗坏血酸的颜色和质量变化的化学还原,证明了在探针内的相同塞体积内进行采样、浓缩和有效运行反应的能力。

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