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首页> 外文期刊>Analytical chemistry >Direct Analysis of Biofluids by Mass Spectrometry with Microfluidic Voltage-Assisted Liquid Desorption Electrospray Ionization
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Direct Analysis of Biofluids by Mass Spectrometry with Microfluidic Voltage-Assisted Liquid Desorption Electrospray Ionization

机译:用微流体电压辅助液体解吸电喷雾电离直接分析生物流体的质谱法

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摘要

Signal suppression by sample matrix in direct electrospray ionization–mass spectrometric (ESI-MS) analysis hampers its clinical and biomedical applications. We report herein the development of a microfluidic voltage-assisted liquid desorption electrospray ionization (VAL-DESI) source to overcome this limitation. Liquid DESI is achieved for the first time in a microfluidic format. Direct analysis of urine, serum, and cell lysate samples by using the proposed microfluidic VAL-DESI-MS/MS method to detect chemical compounds of biomedical interest, including nucleosides, monoamines, amino acids, and peptides is demonstrated. Analyzing a set of urine samples spiked with dihydroxyphenylalanine (DOPA) showed that the assay had a linear calibration curve with r2 value of 0.997 and a limit of detection of 0.055 μM DOPA. The method was applied to simultaneous quantification of nucleosides, that is, cytidine, adenosine, uridine, thymidine, and guanosine in cell lysates using 8-bromoadenosine as internal standard. Adenosine was found most abundant at 26.5 ± 0.57 nmol/106 cells, while thymidine was least at 3.1 ± 0.31 nmol/106 cells. Interestingly, the ratio of adenosine to deoxyadenosine varied significantly from human red blood cells (1.07 ± 0.06) to cancerous cells, including lymphoblast TK6 (0.52 ± 0.02), skin melanoma C32 (0.82 ± 0.04), and promyelocytic leukemia NB4 cells (0.38 ± 0.06). These results suggest that the VAL-DESI-MS/MS technique has a good potential in direct analysis of biofluids. Further, because of the simplicity in its design and operation, the proposed microfluidic liquid DESI source can be fabricated as a disposable device for point-of-care measurements.]]>
机译:<! 20171115 /图像/中/ ac-2017-02398V_0006.gif“>直接电喷雾电离质谱(ESI-MS)分析中的样品矩阵的信号抑制妨碍了其临床和生物医学应用。我们在本文中报告了微流体电压辅助液体解吸电喷雾电离(Val-Desi)源的开发,以克服这种限制。液体DESI首次以微流体形式实现。通过使用所提出的微流体Val-Desi-MS / MS方法来检测生物医学感兴趣的化学化合物,包括核苷,单胺,氨基酸和肽,直接分析尿液,血清和细胞裂解物样品。分析用二羟基苯丙氨酸(DOPA)尖刺的一组尿液样品表明,测定具有线性校准曲线,其中 R r> 2 值为0.997,检测极限为0.055μm的多巴。将该方法应用于核苷的同时定量,即使用8-溴纳米作为内标,细胞裂解物中的胞嘧啶,腺苷,尿苷,胸苷和鸟苷。在26.5±0.57 nmol / 10 6℃,腺苷发现腺苷最丰富,而胸苷含量最少在3.1±0.31nmol / 10 6℃。有趣的是,腺苷对脱氧腺苷的比例从人红细胞(1.07±0.06)到癌细胞显着变化,包括淋巴细胞TK6(0.52±0.02),皮肤黑素瘤C32(0.82±0.04)和幼胞菌白血病NB4细胞(0.38± 0.06)。这些结果表明,Val-Desi-MS / MS技术具有良好的生物流体直接分析的潜力。此外,由于其设计和操作简单,所提出的微流体液体DESI源可以制造为用于护理点测量的一次性装置。]>

著录项

  • 来源
    《Analytical chemistry》 |2017年第22期|共9页
  • 作者单位

    Department of Chemistry and Biochemistry Jackson State University Jackson Mississippi 39217 United States;

    Department of Chemistry and Biochemistry Jackson State University Jackson Mississippi 39217 United States;

    Zhongnan Hospital of Wuhan University Wuhan 430071 China;

    Zhongnan Hospital of Wuhan University Wuhan 430071 China;

    State Key Laboratory for the Chemistry and Molecular Engineering of Medicinal Resources Guangxi Normal University Guilin 541004 China;

    Department of Chemistry and Biochemistry Jackson State University Jackson Mississippi 39217 United States;

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  • 正文语种 eng
  • 中图分类 分析化学;
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