CNRS/UPPA, Laboratoire de Chimie Analytique Bio-Inorganique et Environnement, UMR5254, Hélioparc, 2, av. Pr. Angot, 64053 Pau, France.
Anal Chim Acta. 2010 Jan 11;657(2):175-90. doi: 10.1016/j.aca.2009.10.040.
Normal-phase HPLC and hydrophilic interaction HPLC (HILIC) were investigated for the separation of selenometabolites in a water extract of Se-rich yeast prior to their detection by ICP-MS and identification by electrospray MS/MS. The targeted fraction was a low-abundant fraction co-eluting with salt and sulfur analogues in size-exclusion chromatography which has so far been inaccessible to Se speciation studies. The optimization of the separation conditions resulted in the highest separation efficiency when HILIC was used and elution was carried out isocratically with a low concentration ammonium acetate buffer (1 mM ammonium acetate/10 mM acetic acid) in 80% acetonitrile. Out of 15 peaks observed with the Se-specific ICP-MS detection 12 was identified by electrospray Q-TOF MS/MS (2,3-dihydroxypropionyl (DHP)-Se-methylselenocysteine [M+H]+: 272, Se-methyl-gamma-glutamyl-selenocysteinylglycine dioxide [M+H]+: 402, gamma-glutamyl-Se-methylselenocysteine [M+H]+: 313; isomers of gamma-glutamylselenocystathionine [M+H]+: 400; Se-methyl-selenoglutathione [M+H]+: 370, isomers of N-acetylselenocystathionine [M+H]+: 313, 2,3-DHP-selenohomolanthionine [M+H]+: 373, isomers of 2,3-DHP-selenocystathionine [M+H]+: 359, 2,3-DHP-selenolanthionine [M+H]+: 345 and selenohomolanthionine [M+H]+: 285).
正相高效液相色谱法和亲水相互作用高效液相色谱法(HILIC)被用于分离富硒酵母水提物中的硒代谢物,然后用 ICP-MS 检测,用电喷雾 MS/MS 鉴定。目标馏分是在排阻色谱中与盐和硫类似物共洗脱的低丰度馏分,这部分迄今为止一直无法进行硒形态研究。通过优化分离条件,当使用 HILIC 进行洗脱,并在 80%乙腈中用低浓度乙酸铵缓冲液(1 mM 乙酸铵/10 mM 乙酸)等度洗脱时,获得了最高的分离效率。在使用 Se 特异性 ICP-MS 检测到的 15 个峰中,有 12 个通过电喷雾 Q-TOF MS/MS 鉴定(2,3-二羟丙酰基(DHP)-Se-甲基硒代半胱氨酸[M+H]+:272,Se-甲基-γ-谷氨酰-硒代半胱氨酸基甘氨酸二氧化物[M+H]+:402,γ-谷氨酰-Se-甲基硒代半胱氨酸[M+H]+:313;γ-谷氨酰硒代胱硫醚[M+H]+的异构体:400;Se-甲基-硒代谷胱甘肽[M+H]+:370,N-乙酰基硒代胱硫醚[M+H]+的异构体:313,2,3-DHP-硒代同型硫氨酸[M+H]+:373,2,3-DHP-硒代胱硫醚[M+H]+的异构体:359,2,3-DHP-硒代硫氨酸[M+H]+:345 和硒代同型硫氨酸[M+H]+:285)。