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绿色提取方法:微波辅助水提取结合亲水相互作用色谱-高分辨率质谱分析以定量植物中的亲水性化合物

Green Extraction Method: Microwave-Assisted Water Extraction Followed by HILIC-HRMS Analysis to Quantify Hydrophilic Compounds in Plants.

作者信息

Louis Alexandra, Chich Jean François, Chepca Hadrien, Schmitz Isabelle, Hugueney Philippe, Maia-Grondard Alessandra

机构信息

SVQV, INRAE-Université de Strasbourg, 68000 Colmar, France.

Université Rouen Normandie, INSA, CNRS, BS UMR 6270, Polymers, Biopolymers, Surfaces Lab., 76000 Rouen, France.

出版信息

Metabolites. 2025 Mar 25;15(4):223. doi: 10.3390/metabo15040223.

Abstract

Hydrophilic compounds, such as amino acids, organic acids and sugars, among others, are present in large amounts in plant cells. The analysis and quantification of these major hydrophilic compounds are particularly relevant in plant science because they have a considerable impact on the quality of plant-derived products and on plant-pathogen relationships. Our objective was to develop and validate a complete analysis workflow combining a water-based extraction procedure with a fast separation using hydrophilic interaction liquid chromatography coupled to high-resolution mass spectrometry (HILIC-HRMS) for quantitative analysis of hydrophilic compounds in plant tissues. Water-based microwave-assisted extraction (MAE) methods for hydrophilic compounds were compared using HILIC-HRMS. The newly developed method involved 20 s MAE time followed by a 10 min HILIC-HRMS analysis. This bioanalytical method was validated for 24 polar metabolites, including amino acids, organic acids, and sugars, to ensure the reliability of analytical results: selectivity, limits of detection and quantification, calibration range and precision. Depending on the compounds, quantification limit was as low as 0.10 µM up to 4.50 µM. Between-run RSDs evaluated on and samples were all below 20% except for three compounds. A water-based MAE method, coupled with HILIC-HRMS, was developed for the absolute quantification of free amino acids, organic acids, and sugars in plant tissues. Its effectiveness was demonstrated in both lignified plants, such as , and non-lignified plants, such as . This method is suitable for medium- to high-throughput analysis of key polar metabolites from small amounts of plant material.

摘要

亲水性化合物,如氨基酸、有机酸和糖类等,在植物细胞中大量存在。这些主要亲水性化合物的分析和定量在植物科学中尤为重要,因为它们对植物衍生产品的质量以及植物与病原体的关系有相当大的影响。我们的目标是开发并验证一种完整的分析流程,该流程将水基提取程序与使用亲水作用液相色谱-高分辨率质谱联用(HILIC-HRMS)的快速分离相结合,用于植物组织中亲水性化合物的定量分析。使用HILIC-HRMS比较了亲水性化合物的水基微波辅助提取(MAE)方法。新开发的方法包括20秒的MAE时间,随后进行10分钟的HILIC-HRMS分析。该生物分析方法针对24种极性代谢物(包括氨基酸、有机酸和糖类)进行了验证,以确保分析结果的可靠性:选择性、检测限和定量限、校准范围和精密度。根据化合物的不同,定量限低至0.10 μM至4.50 μM。除三种化合物外,在 和 样品上评估的批间相对标准偏差均低于20%。开发了一种水基MAE方法,并与HILIC-HRMS联用,用于植物组织中游离氨基酸、有机酸和糖类的绝对定量。在木质化植物(如 )和非木质化植物(如 )中均证明了其有效性。该方法适用于对少量植物材料中关键极性代谢物进行中高通量分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83cc/12029008/10daa4cc2008/metabolites-15-00223-g001.jpg

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