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以乙酸作为流动相添加剂提高液相色谱-质谱联用对木质素低聚物和酚类化合物表征的灵敏度。

Improving liquid chromatography-mass spectrometry sensitivity for characterization of lignin oligomers and phenolic compounds using acetic acid as a mobile phase additive.

作者信息

Song Woo-Young, Park Hyejin, Kim Tae-Young

机构信息

School of Earth Sciences and Environmental Engineering, 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61005, South Korea.

School of Earth Sciences and Environmental Engineering, 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61005, South Korea.

出版信息

J Chromatogr A. 2022 Dec 6;1685:463598. doi: 10.1016/j.chroma.2022.463598. Epub 2022 Oct 23.

DOI:10.1016/j.chroma.2022.463598
PMID:36323097
Abstract

Characterization of complex lignin degradation products by liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS) requires a high sensitivity, which can be improved by use of optimized mobile phase additive. In this study, chromatographic separation and ionization efficiency for LC-MS analysis of lignin oligomers and lignin-derived phenolic compounds were compared among six different mobile phase additives. We found that acetic acid exhibits analytical performance superior to the other mobile phase additives for characterization of lignin degradation products by LC-(-)-ESI-MS/MS. The retention of phenolic compounds (PCs) containing carboxylic group was improved by using acidic additives instead of their ammonium salts. The use of acetic acid as an LC mobile phase additive enhanced the ionization efficiency of PCs in (-)-ESI-MS about 2 to 4 times higher than the other additives. The improved MS sensitivity with acetic acid yielded a higher coverage of fragment ions in LC-MS/MS analysis, leading to identification of four additional synthetic G-type lignin oligomers (LOs) than ammonium acetate. A similar degree of sensitivity enhancement was also demonstrated for degradation products from rice straw lignin using acetic acid additive over the others. The increased chromatographic retention and enhanced sensitivity of PCs and LOs provided by the use of acetic acid as an LC-(-)-ESI-MS mobile phase additive will facilitate structural analysis of lignin degradation products without relying on additional instrumentation.

摘要

通过液相色谱 - 电喷雾电离 - 串联质谱(LC - ESI - MS/MS)对复杂木质素降解产物进行表征需要高灵敏度,这可以通过使用优化的流动相添加剂来提高。在本研究中,比较了六种不同流动相添加剂用于木质素低聚物和木质素衍生酚类化合物的LC - MS分析时的色谱分离和电离效率。我们发现,对于通过LC - (-)-ESI - MS/MS表征木质素降解产物,乙酸表现出优于其他流动相添加剂的分析性能。使用酸性添加剂而非其铵盐可提高含羧基酚类化合物(PCs)的保留率。使用乙酸作为LC流动相添加剂可使PCs在(-)-ESI - MS中的电离效率比其他添加剂提高约2至4倍。使用乙酸提高了MS灵敏度,在LC - MS/MS分析中产生了更高的碎片离子覆盖率,从而比使用乙酸铵鉴定出另外四种合成G型木质素低聚物(LOs)。对于使用乙酸添加剂的稻草木质素降解产物,与其他添加剂相比也显示出类似程度的灵敏度增强。使用乙酸作为LC - (-)-ESI - MS流动相添加剂提高了PCs和LOs的色谱保留率并增强了灵敏度,这将有助于在不依赖额外仪器的情况下对木质素降解产物进行结构分析。

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