首页> 外文期刊>Journal of proteome research >Integrated ionization approach for RRLC-MS/MS-based metabonomics: Finding potential biomarkers for lung cancer
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Integrated ionization approach for RRLC-MS/MS-based metabonomics: Finding potential biomarkers for lung cancer

机译:基于RRLC-MS / MS的代谢组学的综合电离方法:寻找潜在的肺癌生物标志物

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An integrated ionization approach of electrospray ionization (ESI), atmospheric pressure chemical ionization (APCI), and atmospheric pressure photoionization (APPI) combining with rapid resolution liquid chromatography mass spectrometry (RRLC-MS) has been developed for performing global metabonomic analysis on complex biological samples. This approach was designed to overcome the low ionization efficiencies of endogenous metabolites due to diverse physicochemical properties as well as ion suppression, and obtain comprehensive metabolite profiles in LC-MS analysis. Ionization capability and applicability were manifested by improved ionization efficiency and enlarged metabolite coverage in analysis on typical urinary metabolite standards and urine samples from healthy volunteers. The method was validated by the limit of detection and precision. When applied to the global metabonomic studies of lung cancer, more comprehensive biomarker candidates were obtained to reflect metabolic traits between healthy volunteers and lung cancer patients, including 74 potential biomarkers in positive ion mode and 59 in negative ion mode. Taking identical potential biomarkers of any two or three ionization methods into account, analysis using ESI-MS in positive (+) and negative (-) ion mode contributed to 70 and 64% of the total potential biomarkers, respectively. The biomarker discovery capability of (±) APCI-MS accounted for 45 and 42% of the overall; meanwhile (±) APPI-MS amounted for 39 and 54%. These results indicated that potential biomarkers with vital biological information could be missed if only a single ionization method was used. Furthermore, 11 potential biomarkers were identified including amino acids, nucleosides, and a metabolite of indole. They revealed elevated amino acid and nucleoside metabolism as well as protein degradation in lung cancer patients. This proposed approach provided a more comprehensive picture of the metabolic changes and further verified identical biomarkers that were obtained simultaneously using different ionization methods.
机译:已开发出一种结合电喷雾电离(ESI),大气压化学电离(APCI)和大气压光电离(APPI)的集成电离方法,与快速分辨率液相色谱质谱法(RRLC-MS)结合使用,以对复杂生物进行整体代谢组学分析样品。此方法旨在克服由于多种理化特性以及离子抑制而导致的内源性代谢物电离效率低的问题,并在LC-MS分析中获得全面的代谢物特征。在典型的尿液代谢物标准品和健康志愿者尿液样品的分析中,电离效率的提高和代谢物覆盖率的提高体现了电离能力和适用性。该方法已通过检测限和精密度的验证。当应用于肺癌的全球代谢组学研究时,获得了更全面的生物标志物候选物,以反映健康志愿者与肺癌患者之间的代谢特征,包括74种处于阳离子模式的潜在生物标志物和59种处于负离子模式的潜在生物标志物。考虑到任何两种或三种电离方法的相同潜在生物标记,使用ESI-MS在正离子(+)和负离子(-)模式下进行的分析分别占总潜在生物标记的70%和64%。 (±)APCI-MS的生物标志物发现能力分别占整体的45%和42%;同时(±)APPI-MS分别占39%和54%。这些结果表明,如果仅使用一种电离方法,则可能会丢失具有重要生物学信息的潜在生物标记。此外,鉴定出11种潜在的生物标记物,包括氨基酸,核苷和吲哚的代谢产物。他们发现肺癌患者的氨基酸和核苷代谢增加,蛋白质降解。该提议的方法为代谢变化提供了更全面的图像,并进一步验证了使用不同电离方法同时获得的相同生物标志物。

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