首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A dielectric barrier discharge ionization based interface for online coupling surface plasmon resonance with mass spectrometry
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A dielectric barrier discharge ionization based interface for online coupling surface plasmon resonance with mass spectrometry

机译:基于介电势垒放电电离的界面在线耦合表面等离子体共振与质谱

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摘要

The online combination of surface plasmon resonance (SPR) with mass spectrometry (MS) could be beneficial for accurately acquiring molecular interaction data simultaneously with their structural information at high throughputs. In this work, a novel SPR-MS interface was developed using a dielectric barrier discharge ionization (DBDI) source. The DBDI source was placed in front of the MS inlet, generating an ionization plasma jet. A spray tip was set between the DBDI source outlet and the MS inlet, nebulizing the SPR sample solution. Using this interface, samples could first be studied by SPR, then sprayed and ionized, finally analyzed by MS. By analyzing model samples containing small-molecule drugs dissolved in salt containing solutions, the practicability of this SPR-DBDI-MS interface was proved, observing the consistent change of SPR and MS signals. Compared with our previously developed direct analysis in real time (DART) based SPR-MS interface, this new interface exhibited a higher and better tolerance to non-volatile salts, and different ionization capabilities for various samples. These results indicated that the interface could find further utilization in SPR-MS studies especially when physiological conditions were needed.
机译:表面等离振子共振(SPR)与质谱(MS)的在线结合可能有利于在高通量下同时准确获取分子相互作用数据及其结构信息。在这项工作中,使用介电势垒放电电离(DBDI)源开发了新颖的SPR-MS接口。将DBDI源放置在MS入口的前面,生成电离等离子体射流。在DBDI源出口和MS入口之间设置了一个喷嘴,以雾化SPR样品溶液。使用该界面,可以先通过SPR研究样品,然后进行喷雾和电离,最后通过MS分析。通过分析包含溶解在含盐溶液中的小分子药物的模型样品,证明了SPR-DBDI-MS接口的实用性,同时观察了SPR和MS信号的一致变化。与我们以前开发的基于SPR-MS的实时直接分析(DART)界面相比,该新界面对非挥发性盐具有更高更好的耐受性,并且对各种样品具有不同的电离能力。这些结果表明,该界面可以在SPR-MS研究中找到更多的用途,尤其是在需要生理条件的情况下。

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