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Application of LC and GC hyphenated with mass spectrometry as tool for characterization of unknown derivatives of isoflavonoids

机译:质谱联用LC和GC作为表征异黄酮未知衍生物的工具的应用

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Polyphenols belonging to the class of secondary metabolites of plants and microorganisms play an important role as bioactive food constituents as well as contaminants. Structure elucidation of polyphenols in plant extracts or polyphenol metabolites, especially those arising during biotransformation, still represents a challenge for analytical chemistry. Various approaches have been proposed to utilize fragmentation reactions in connection with mass spectrometry (MS) for structural considerations on polyphenolic targets. We compiled and applied specific liquid chromatography (LC)–electrospray ionization in positive mode [ESI(+)]–tandem MS (MS/MS) and gas chromatography (GC)–(electron impact, EI)–MS/MS fragmentation reactions with a special focus on the analysis of isoflavones, whereby this technique was also found to be extendable to determine further polyphenols. For ESI(+)-MS the basic retro-Diels–Alder (rDA) fragmentation offers information about the substitution pattern in the A- and B-rings of flavonoids and the elimination of a protonated 4-methylenecyclohexa-2,5-dienone (m/z = 107) fragment can be used as a diagnostic tool for many isoflavanones. For GC-(EI)-MS/MS analysis after derivatization of the analytes to their trimethylsilyl ethers, the elimination of methyl radicals, tetramethylsilane groups or the combined loss of two methyl groups can be shown to be specific for certain substitution patterns in polyphenols. The applicability of the fragmentation reactions presented is demonstrated exemplarily for three derivatives of the isoflavone irilone. With the help of these fragmentation reactions of the two MS techniques combined, a reliable identification of polyphenols is possible. Especially in such cases where NMR cannot be utilized owing to low analyte amounts being available or prior to purification, valuable information can be obtained.
机译:属于植物和微生物的次级代谢产物的多酚作为生物活性食品成分和污染物发挥着重要作用。植物提取物或多酚代谢物中多酚的结构解析,尤其是在生物转化过程中产生的多酚,仍然是分析化学的挑战。对于多酚靶的结构考虑,已经提出了各种方法来利用与质谱分析(MS)有关的断裂反应。我们编辑并应用了专用液相色谱(LC)–正模式电喷雾电离[ESI(+)] –串联质谱(MS / MS)和气相色谱(GC)–(电子碰撞,EI)–MS / MS裂解反应,特别关注异黄酮的分析,据此该技术还可以扩展用于测定其他多酚。对于ESI(+)-MS,基本的Diels-Alder逆向片段化(rDA)片段提供了有关类黄酮A和B环中的取代模式以及质子化的4-亚甲基环己-2,5-二烯酮的消除的信息( m / z = 107)片段可以用作许多异黄酮的诊断工具。对于将分析物衍生为三甲基甲硅烷基醚后的GC-(EI)-MS / MS分析,对于多酚中的某些取代模式,甲基,四甲基硅烷基的消除或两个甲基基团的结合损失可能表现为特定的。所示的裂解反应的适用性示例性地证明了异黄酮艾里隆的三种衍生物。借助结合两种MS技术的这些裂解反应,可以可靠地鉴定多酚。特别是在由于可用的分析物量少或在纯化之前而无法使用NMR的情况下,可以获得有价值的信息。

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