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Stable and reproducible nano-electrospray ionization of aqueous solutions and untreated biological samples using ion current limitation combined with polarity reversing

机译:使用离子电流限制与极性反转相结合水溶液和未处理的生物样品的稳定且可再现的纳米电喷雾电离

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摘要

Owing to its high chemical sensitivity and low sample consumption, nanoelectrospray ionization mass spectrometry (nESI-MS) is nowadays widely used in various fields such as chemistry, biology, medicine, pharmaceutical industry, clinical assessment and forensic science. The key analytical limitations of conventional nESI-MS analysis include low stability and poor tip-to-tip reproducibility of analyte signals due to the common clogging of glass capillary tips and the occurrence of electric discharge, especially for the analysis of aqueous solutions. In this study, the nESI current was greatly reduced and the corona discharge was efficiently quenched using a 10 G resistor placed in series between a pulled glass capillary and a high voltage power supply. Additionally, polarity reversing was applied for the in situ salt removal and higher signal intensity than in conventional nESI. Furthermore, by closing the back side of the pulled glass capillary during the analysis the sample flow rate could be reduced down to ca. 1 nL min(-1). This combined approach allows the analysis of various aqueous solutions and untreated biological samples without tip clogging and electric discharge both in positive and negative modes with enhanced chemical sensitivity, high signal durability (up to several hours per sample) and excellent tip-to-tip reproducibility (80-90%). We believe that the proposed approach may solve many current problems and significantly advance nESI mass spectrometry in the very near future.
机译:由于其高化学敏感性和低样品消耗,纳米电池电离质谱(NESI-MS)如今广泛用于各种领域,例如化学,生物学,医药,制药行业,临床评估和法医学。常规NESI-MS分析的关键分析限制包括由于玻璃毛细管提示的常见堵塞以及放电的常见堵塞而对分析物信号的低稳定性和较差的尖端末端再现性,特别是对于水溶液的分析。在该研究中,使用10g电阻器在拉动的玻璃毛细管和高压电源之间串联放置的10g电阻器有效地降低了NESI电流。另外,施加极性反转,用于原位盐去除和比常规NESI更高的信号强度。此外,通过在分析期间关闭拉玻璃毛细管的后侧,可以减少到CA的样品流速。 1 nl min(-1)。这种组合方法允许分析各种水溶液和未处理的生物样品而无需尖端堵塞和放电,两者都以增强的化学灵敏度,高信号耐久性(每个样品最多几小时)和出色的尖端到尖端再现性(80-90%)。我们认为,所提出的方法可以解决许多当前问题,并在不久的将来显着推进NESI质谱。

著录项

  • 来源
    《Analytical methods》 |2019年第2期|共8页
  • 作者单位

    East China Univ Technol Jiangxi Key Lab Mass Spectrometry &

    Instrumentat Nanchang 330013 Jiangxi Peoples R China;

    East China Univ Technol Jiangxi Key Lab Mass Spectrometry &

    Instrumentat Nanchang 330013 Jiangxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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