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首页> 外文期刊>Chimia >Interfacing Microfluidics and Laser Desorption/Ionization Mass Spectrometry by Continuous Deposition for Application in Single Cell Analysis
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Interfacing Microfluidics and Laser Desorption/Ionization Mass Spectrometry by Continuous Deposition for Application in Single Cell Analysis

机译:微流控技术和连续沉积激光解吸/电离质谱技术在单细胞分析中的应用

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摘要

We present a simple method for continuous deposition of effluent originating from a microfluidic device on a flat metal surface for subsequent analysis by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). The sample is delivered using a microscale fused silica capillary and passed onto the surface of a stainless steel plate coated with a layer of a standard matrix. The key parameters optimized in order to obtain high quality and reproducible sample traces are: i) sample flow rate, ii) speed of the XY-stage movement, and iii) distance of the capillary tip from the plate. Tapering the capillary end as well as surface functionalization to induce hydrophobicity were shown to further enhance the deposition process. The described continuous deposition method is compared with a previously published mass spectrometric method utilizing a piezoelectric microdis-penser for microspotting onto the MALDI plates which enabled detection of primary metabolites at the single cell level. Research is underway to adapt the continuous deposition as an interface for single cell metabolite detection and enhancement of quantitative abilities of the MALDI methodology. We envisage that the presented continuous deposition method may also be suitable for sensitive detection of analytes using other surface analysis tools.
机译:我们提出了一种简单的方法,用于将微流体装置产生的流出物连续沉积在平坦的金属表面上,以便通过基质辅助激光解吸/电离质谱法(MALDI-MS)进行后续分析。使用微型熔融石英毛细管输送样品,并将其传递到涂覆有标准基质层的不锈钢板表面上。为了获得高质量和可重现的样品痕迹而优化的关键参数是:i)样品流速,ii)XY平台移动的速度,以及iii)毛细管尖端距板的距离。逐渐变细的毛细管末端以及诱导疏水性的表面功能化可进一步增强沉积过程。所描述的连续沉积方法与先前发表的使用压电微量分配器进行微量点样到MALDI板上的质谱方法进行了比较,该方法可以检测单个细胞水平的主要代谢物。正在进行研究以使连续沉积适应于单细胞代谢物检测和增强MALDI方法定量能力的接口。我们设想,提出的连续沉积方法也可能适用于使用其他表面分析工具对分析物进行灵敏检测。

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