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超快速搜索有助于评估超高效液相色谱/轨道阱质谱数据中亚百万分之一质量精度的提高。

Ultra-fast searching assists in evaluating sub-ppm mass accuracy enhancement in U-HPLC/Orbitrap MS data.

作者信息

Lommen Arjen, Gerssen Arjen, Oosterink J Efraim, Kools Harrie J, Ruiz-Aracama Ainhoa, Peters Ruud J B, Mol Hans G J

机构信息

RIKILT, Institute of Food Safety, Wageningen UR, P.O. Box 230, 6700AE Wageningen, The Netherlands.

出版信息

Metabolomics. 2011 Mar;7(1):15-24. doi: 10.1007/s11306-010-0230-y. Epub 2010 Jul 18.

Abstract

A strategy, detailed methodology description and software are given with which the mass accuracy of U-HPLC-Orbitrap data (resolving power 50,000 FWHM) can be enhanced by an order of magnitude to sub-ppm levels. After mass accuracy enhancement all 211 reference masses have mass errors within 0.5 ppm; only 14 of these are outside the 0.2 ppm error margin. Further demonstration of mass accuracy enhancement is shown on a pre-concentrated urine sample in which evidence for 89 (342 ions) potential hydroxylated and glucuronated DHEA-metabolites is found. Although most DHEA metabolites have low-intensity mass signals, only 11 out of 342 are outside the ±1 ppm error envelop; 272 mass signals have errors below 0.5 ppm (142 below 0.2 ppm). The methodology consists of: (a) a multiple internal lock correction (here ten masses; no identity of internal lock masses is required) to avoid suppression problems of a single internal lock mass as well as to increase lock precision, (b) a multiple external mass correction (here 211 masses) to correct for calibration errors, (c) intensity dependant mass correction, (d) file averaging. The strategy is supported by ultra-fast file searching of baseline corrected, noise-reduced metAlign output. The output and efficiency of ultra-fast searching is essential in obtaining the required information to visualize the distribution of mass errors and isotope ratio deviations as a function of mass and intensity. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11306-010-0230-y) contains supplementary material, which is available to authorized users.

摘要

本文给出了一种策略、详细的方法描述及软件,利用它们可将超高效液相色谱-轨道阱数据(分辨率为50,000 半高宽)的质量准确度提高一个数量级,达到亚百万分之一水平。在提高质量准确度之后,所有211个参考质量的质量误差均在0.5 ppm以内;其中只有14个超出了0.2 ppm的误差范围。在一份预浓缩尿液样本上进一步展示了质量准确度的提高,在该样本中发现了89种(342个离子)潜在的羟基化和葡萄糖醛酸化脱氢表雄酮代谢物的证据。尽管大多数脱氢表雄酮代谢物的质量信号强度较低,但342个信号中只有11个超出了±1 ppm的误差范围;272个质量信号的误差低于0.5 ppm(142个低于0.2 ppm)。该方法包括:(a) 多重内部锁校正(此处为10个质量;无需确定内部锁质量的具体身份),以避免单个内部锁质量的抑制问题并提高锁精度,(b) 多重外部质量校正(此处为211个质量),以校正校准误差,(c) 强度依赖性质量校正,(d) 文件平均。该策略得到了对经基线校正、降噪的metAlign输出进行超快速文件搜索的支持。超快速搜索的输出和效率对于获取所需信息以可视化质量误差分布和同位素比偏差随质量和强度的变化至关重要。电子补充材料:本文的在线版本(doi:10.1007/s11306-010-0230-y)包含补充材料,授权用户可获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce1b/3040356/b78480ca4221/11306_2010_230_Fig1_HTML.jpg

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