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首页> 外文期刊>Metallomics. integrated biometal science >Comprehensive speciation of low-molecular weight selenium metabolites in mustard seeds using HPLC - electrospray linear trap/orbitrap tandem mass spectrometryt
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Comprehensive speciation of low-molecular weight selenium metabolites in mustard seeds using HPLC - electrospray linear trap/orbitrap tandem mass spectrometryt

机译:高效液相色谱-电喷雾线性阱/轨道阱串联质谱法对芥菜种子中低分子量硒代谢物的全面形态分析

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摘要

An analytical methodology based on high-resolution high mass accuracy electrospray ionization (ESI) tandem MS assisted by Se-specific detection using inductively coupled plasma mass spectrometry (ICP MS) was developed for speciation of selenium (Se) in seeds of black mustard (Brassica nigra) grown on Se-rich soil. Size-exclusion LC-ICP MS allowed the determination of the Se distribution according to the molecular mass and the control of the species stability during extraction. The optimization of hydrophilic interaction of LC and cation-exchange HPLC resulted in analytical conditions making it possible to detect and characterize over 30 Se species using ESI MS, including a number of minor (<0.5%) metabolites. Selenoglucosinolates were found to be the most important class of species accounting for at least 15% of the total Se present and over 50% of all the metabolites. They were found particularly unstable during aqueous extraction leading to the loss of Se by volatilization as methylselenonitrilesand methylselenoisothiocyanat.es identified using gas chromatography (GC) with the parallel ICP MS and atmospheric pressure chemical ionization (APCI) MS/MS detection. However, selenoglucosinolates could be efficiently recovered by extraction with 70% methanol. Other classes of identified species included selenoamino acids, selenosugars, selenosinapine and selenourea derivatives. The three types of reactions leading to the formation of selenometabolites were: the Se-S substitution in the metabolic pathway, oxidative reactions of -SeH groups with endogenous biomolecules, and chemical reactions, e.g., esterification, of Se-containing molecules and other biomolecules through functional groups not involving Se.
机译:开发了一种基于高分辨率高质量电喷雾电离(ESI)串联MS的分析方法,该方法通过使用电感耦合等离子体质谱(ICP MS)进行的Se特异性检测辅助,用于黑芥菜(芸苔在富含硒的土壤上生长尺寸排阻LC-ICP MS可以根据分子质量确定Se分布,并控制萃取过程中物种的稳定性。 LC和阳离子交换HPLC的亲水相互作用的优化产生了分析条件,使得可以使用ESI MS检测和表征30多种硒,其中包括许多次要(<0.5%)代谢物。发现硒代芥子油苷是最重要的种类,至少占总硒的15%,占所有代谢物的50%以上。发现它们在水萃取过程中特别不稳定,这是通过气相色谱(GC)与平行ICP MS和常压化学电离(APCI)MS / MS检测鉴定出的甲基硒腈和甲基硒代异硫氰酸酯。但是,通过用70%甲醇萃取可以有效地回收硒代芥子油苷。其他种类的鉴定出的物种包括硒氨基酸,硒糖,硒代芥子碱和硒脲衍生物。导致硒代代谢物形成的三种类型的反应是:代谢途径中的Se-S取代,-SeH基团与内源性生物分子的氧化反应以及含硒分子和其他生物分子通过的化学反应(例如酯化)不涉及硒的官能团。

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