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Ultrasensitive Single Cell Metabolomics by Capillary Electrophoresis-Mass Spectrometry with a Thin-Walled Tapered Emitter and Large-Volume Dual Sample Preconcentration

机译:用薄壁锥形发射器和大容量双样品预浓缩毛细管电泳 - 质谱法通过毛细管电泳 - 质谱

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摘要

Single cell metabolome analysis is essential for studying microscale life phenomena such as neuronal networks and tumor microenvironments. Capillary electrophoresis-mass spectrometry (CE-MS) is one of the most sensitive technologies; however, its sensitivity is still not enough for single cell analysis on general human cells such as HeLa. To address these issues, we first developed an efficient ionization emitter, named as a "nanoCESI" emitter, that had a thin-walled (similar to 10 mu m) and tapered (5-10 mu m) end. The thin conductive wall enabled sheathless ionization and minimized the flow rate of ionizing sample, and the tapered end efficiently ionized analytes via an electrospray ionization mechanism, providing up to 3.5-fold increase in sensitivity compared with a conventional sheathless emitter. Fifty repetitive analyses on 20 amino acids were successfully achieved with a nanoCESI emitter. Relative standard deviations of 50 analyses were 1.5%, 4.4%, and 6.8% for migration time, peak height, and peak area, respectively, where a limit of detection (LOD) of 170 pM (850 zmol) was achieved. Second, a sample enrichment method, large-volume dual preconcentration by isotachophoresis and stacking (LDIS), was applied to a newly designed protocol of nanoCESI-MS. This approach achieved up to 380-fold enhanced sensitivity and LOD of 450 fM. Compared with normal sheathless CE-MS, coupling of nanoCESI and LDIS provided up to 800-fold increase of sensitivity in total. Finally, metabolome analyses of single HeLa cells were performed, where 20 amino acids were successfully quantified with triple-quadrupole MS and 40 metabolites were identified with quadrupole-time-of-flight MS, as a promising analytical platform for microscale bioanalysis for the next generation.
机译:单细胞代谢分析对于研究微观寿命现象,例如神经元网络和肿瘤微环境是必不可少的。毛细管电泳 - 质谱(CE-MS)是最敏感的技术之一;然而,它的敏感性仍然不足以对普通人细胞如Hela的单细胞分析仍然不足。为了解决这些问题,我们首先开发了一个有效的电离发射器,命名为“纳米纳米”发射器,其具有薄壁(类似于10μm)和锥形(5-10μm)的末端。薄导电壁使得均匀电离并最小化电离样品的流速,并通过电喷雾电离机构逐渐有效地电离分析物,与传统的护套发射器相比,灵敏度的增加高达3.5倍。用纳米铯发射器成功实现了20氨基酸上的五十次重复分析。 50分析的相对标准偏差分别为迁移时间,峰值高度和峰面积分别为1.5%,4.4%和6.8%,其中达到170μm(850 Zmol)的检测限(LOD)。其次,将样品富集方法,大容量双重浓缩的等异孔和堆叠(LDI)应用于新设计的纳米MS协议。这种方法可实现高达380倍的增强灵敏度和450 fm。与正常的粗均匀CE-MS相比,NANOCESI和LDI的耦合提供高达800倍的敏感性增加。最后,进行单一HeLa细胞的代谢组分析,其中使用三足四酮MS成功地定量了20个氨基酸,并用四极 - 飞行时间MS鉴定了40个代谢物,作为下一代微观生物分析的有希望的分析平台。

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  • 来源
    《Analytical chemistry》 |2019年第16期|共9页
  • 作者单位

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

    RIKEN Ctr Biosyst Dynam Res Suita Osaka 5650874 Japan;

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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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