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Development of a liquid chromatography-electrospray-tandem mass spectrometry method for the quantitative determination of benzoxazinone derivatives in plants

机译:液相色谱-电喷雾串联质谱法测定植物中苯并恶嗪酮衍生物的开发

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A new method for the quantification of benzoxazinone derivatives in extracts of wheat foliage and root samples using liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS-MS) is described. Using this method, the characterization, separation, and quantitative detection of a mixture of six naturally occurring 1,4-benzoxazin-3(4H)-one derivatives, including the hydroxamic acids (DIMBOA, DIBOA), lactams (HBOA, and HMBOA), benzoxazilinones (BOA, MBOA), and two synthetic methoxylated variations of DIBOA and HBOA, was achieved. The application of a novel, highly modified reversed-phase LC column, the dodecyl (C-12) TMS end-capped Synergi MAX-RP, enhanced the on-fine chromatographic separation through improvements to component resolution, analyte stability and peak shape and also to the column lifetime. The complete ESI-MS-MS precursor-product ion fragmentation pathways for the benzoxazinone derivatives are described for the first time and used to deduce a generic fragmentation pattern for the compound class. Characteristic transitions for the benzoxazinones were thus used in the developed analytical method enabling reliable quantification with simultaneous screening for other potentially present derivatives, while eliminating interferences from other coeluting contaminants from the complex plant extract matrix. Quantitative analysis was done in the multiple reaction monitoring mode, using two specific combinations of a precursor-product ion transitions for each compound. The ESI-MS-MS detection method offered improvements to the sensitivity and selectivity, as compared with previously applied LC methods, with detection limits down to 0.002-0.023 ng/ muL. The developed method was demonstrated by analyzing foliages and roots of six different wheat cultivars using pressurized liquid extraction-solid-phase extraction clean-up-LC-ESI-MS-MS. The analytes were detected in the range of 0.7-207 mug/g of dry weight. [References: 29]
机译:描述了一种使用液相色谱-电喷雾电离串联质谱(LC-ESI-MS-MS)定量测定小麦叶和根样品中苯并恶嗪酮衍生物的新方法。使用此方法,可以表征,分离和定量检测六种天然存在的1,4-苯并恶嗪-3(4H)-一衍生物的混合物,其中包括异羟肟酸(DIMBOA,DIBOA),内酰胺(HBOA和HMBOA) ,苯并恶嗪酮(BOA,MBOA)以及DIBOA和HBOA的两个合成的甲氧基化变体。新型,高度改进的反相液相色谱柱十二烷基(C-12)TMS封端的Synergi MAX-RP的应用通过改善组分的分离度,分析物的稳定性和峰形以及色谱柱的形状来增强了精细的色谱分离色谱柱寿命。首次描述了苯并恶嗪酮衍生物的完整ESI-MS-MS前体-产物离子裂解途径,并用于推导化合物类别的通用裂解模式。因此,在开发的分析方法中使用了苯并恶嗪酮的特征性转变,能够可靠地定量并同时筛选其他潜在存在的衍生物,同时消除了来自复杂植物提取物基质的其他共洗脱污染物的干扰。使用多种化合物的前体-产物离子跃迁的两种特定组合,在多反应监测模式下进行了定量分析。与以前应用的LC方法相比,ESI-MS-MS检测方法提高了灵敏度和选择性,检测限低至0.002-0.023 ng /μL。通过使用加压液体萃取-固相萃取净化-LC-ESI-MS-MS分析六个不同小麦品种的叶子和根系,证明了该方法的有效性。检测到的分析物范围为0.7-207马克杯/克干重。 [参考:29]

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