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一种用于黄精多糖中综合单糖谱分析的甲基化辅助气相色谱-质谱策略:克服传统色谱技术的局限性

A methylation-assisted gas chromatography-mass spectrometry strategy for comprehensive monosaccharide profiling in Polygonatum polysaccharides: Overcoming limitations of conventional chromatographic techniques.

作者信息

Xu Liang, Yao Jinjian, Wang Zhen, Xie Songzi, Ou Jinmei, Wang Bin

机构信息

College of Chinese Medicine, School of Pharmacy, Key Laboratory of Xin'an Medicine of the Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, PR China.

College of Chinese Medicine, School of Pharmacy, Key Laboratory of Xin'an Medicine of the Ministry of Education, Anhui University of Chinese Medicine, Hefei, 230038, PR China.

出版信息

J Chromatogr A. 2025 Sep 27;1759:466253. doi: 10.1016/j.chroma.2025.466253. Epub 2025 Jul 27.

Abstract

Conventional methods for analyzing monosaccharides, such as 1-Phenyl-3-methyl-5-pyrazolone (PMP) derivatization coupled with high-performance liquid chromatography (HPLC), struggle to detect ketoses and acidic sugars. This limitation hinders the precise structural analysis of polysaccharides in traditional Chinese medicine (TCM). A methylation-assisted Gas Chromatography-Mass Spectrometry (GC-MS) approach was developed to address this issue in the current study. By optimizing the methylation process and using GC-MS with a BR-17 column and an Electron Ionization (EI) source, simultaneous detection of ten different monosaccharides was achieved within 20 min. GC-MS profiling of monosaccharides generally gives two peaks per analyte, except in the cases of fructose and galacturonic acid. Notably, fructose (Fru) was identified for the first time in the polysaccharides of Polygonatum species: P. sibiricum at 18.55 μg/mg, P. cyrtonema at 16.90 μg/mg, and P. kingianum at 14.35 μg/mg, overcoming the limitations of the inability to detect ketoses in the PMP-HPLC method. Data analysis revealed distinct species-specific markers: P. kingianum polysaccharides (PKP) uniquely contained α-galacturonic acid (α-Gal: 19.95 μg/mg), whereas P. sibiricum polysaccharides (PSP) featured six monosaccharides, including glucose (Glc: 135.45 μg/mg), mannose (Man: 78.95 μg/mg), and ribose (Rib: 26.90 μg/mg), with a total of 299.50 μg/mg. P. cyrtonema polysaccharides (PCP) showed elevated levels of glucuronic acid (GlcA, 38.40 μg/mg). This derivatization-enhanced GC-MS method effectively fingerprints TCM polysaccharides, enabling clear differentiation of Polygonatum species through analysis of monosaccharide composition and total sugar content. This approach establishes clear structural distinctions, overcoming the limitations of conventional chromatographic techniques and enhancing the quality control and authentication of TCM polysaccharides.

摘要

传统的单糖分析方法,如1-苯基-3-甲基-5-吡唑啉酮(PMP)衍生化结合高效液相色谱(HPLC),难以检测酮糖和酸性糖。这一局限性阻碍了中药多糖的精确结构分析。在本研究中,开发了一种甲基化辅助气相色谱-质谱联用(GC-MS)方法来解决这一问题。通过优化甲基化过程,并使用配备BR-17色谱柱和电子电离(EI)源的GC-MS,在20分钟内实现了十种不同单糖的同时检测。单糖的GC-MS分析图谱通常每个分析物有两个峰,但果糖和半乳糖醛酸除外。值得注意的是,首次在黄精属植物的多糖中鉴定出果糖:玉竹中果糖含量为18.55μg/mg,滇黄精中为16.90μg/mg,多花黄精中为14.35μg/mg,克服了PMP-HPLC法无法检测酮糖的局限性。数据分析揭示了不同的物种特异性标记物:多花黄精多糖(PKP)独特地含有α-半乳糖醛酸(α-Gal:19.95μg/mg),而玉竹多糖(PSP)具有六种单糖,包括葡萄糖(Glc:135.45μg/mg)、甘露糖(Man:78.95μg/mg)和核糖(Rib:26.90μg/mg),总量为299.50μg/mg。滇黄精多糖(PCP)中葡萄糖醛酸(GlcA,38.40μg/mg)含量升高。这种衍生化增强的GC-MS方法有效地对中药多糖进行了指纹图谱分析,通过分析单糖组成和总糖含量能够清晰地区分黄精属物种。该方法建立了明确的结构差异,克服了传统色谱技术的局限性,提高了中药多糖的质量控制和鉴定水平。

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