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Evaluation of the Orbitrap Mass Spectrometer for the Molecular Fingerprinting Analysis of Natural Dissolved Organic Matter

机译:Orbitrap质谱仪对天然溶解有机物分子指纹分析的评估

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We investigated the application of the LTQ-Orbitrap mass spectrometer (LTQ-Velos Pro, Thermo Fisher) for resolving complex mixtures of natural aquatic dissolved organic matter (DOM) and compared this technique to the more established state-of-the-art technique, Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS, Bruker Daltonics), in terms of the distribution of molecular masses detected and the reproducibility of the results collected. The Orbitrap was capable of excellent reproducibility: Bray-Curtis dissimilarity between duplicate measurements was 2.85 +/- 0.42% (mean +/- standard deviation). The Orbitrap was also capable of the detection of most major ionizable organic molecules in typical aquatic mixtures, with the exception of most sulfur and phosphorus containing masses. This result signifies that the Orbitrap is an appropriate technique for the investigation of very subtle biogeochemical processing of bulk DOM. The lower costs (purchase and maintenance) and wider availability of Orbitrap mass spectrometers in university departments means that the tools necessary for research into DOM processing at the molecular level should be accessible to a much wider group of scientists than before. The main disadvantage of the technique is that substantially fewer molecular formulas can be resolved from a complex mixture (roughly one third as many), meaning some loss of information. In balance, most biogeochemical studies that aim at molecularly fingerprinting the source of natural DOM could be satisfactorily carried out with Orbitrap mass spectrometry. For more targeted metabolomic studies where individual compounds are traced through natural systems, FTICR-MS remains advantageous.
机译:我们研究了LTQ-Orbitrap质谱仪(LTQ-Velos Pro,Thermo Fisher)在解决天然水生溶解有机物(DOM)的复杂混合物中的应用,并将此技术与更成熟的最新技术进行了比较,就检测到的分子量分布和所收集结果的可重复性而言,进行了傅里叶变换离子回旋共振质谱(FTICR-MS,布鲁克·道尔顿)。 Orbitrap具有出色的可重复性:两次测量之间的Bray-Curtis相异性为2.85 +/- 0.42%(平均+/-标准偏差)。除了大多数含硫和磷的物质外,Orbitrap还能够检测典型水混合物中的大多数主要可电离的有机分子。该结果表明,Orbitrap是用于研究大量DOM的非常微妙的生物地球化学过程的合适技术。大学部门使用Orbitrap质谱仪的成本更低(购买和维护)和可用性更高,这意味着从分子水平上研究DOM处理所需的工具应该比以前更广泛的科学家可以使用。该技术的主要缺点是可以从复杂的混合物中分解出几乎更少的分子式(大约是三分之一),这意味着信息丢失了。总而言之,大多数旨在分子指纹识别天然DOM来源的生物地球化学研究都可以通过Orbitrap质谱法令人满意地进行。对于通过天然系统追踪单个化合物的更有针对性的代谢组学研究,FTICR-MS仍然具有优势。

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