Hofmann D, Gehre M, Jung K
Department of Analytical Chemistry, UFZ Centre for Environmental Research Leipzig-Halle, Permoserstr 15, 04318 Leipzig, Germany.
Isotopes Environ Health Stud. 2003 Sep;39(3):233-44. doi: 10.1080/1025601031000147630.
In order to identify natural nitrogen isotope variations of biologically important amino acids four derivatization reactions (t-butylmethylsilylation, esterification with subsequent trifluoroacetylation, acetylation and pivaloylation) were tested with standard mixtures of 17 proteinogenic amino acids and plant (moss) samples using GC-C-IRMS. The possible fractionation of the nitrogen isotopes, caused for instance by the formation of multiple reaction products, was investigated. For biological samples, the esterification of the amino acids with subsequent trifluoroacetylation is recommended for nitrogen isotope ratio analysis. A sample preparation technique is described for the isotope ratio mass spectrometric analysis of amino acids from the non-protein (NPN) fraction of terrestrial moss. 14N/15N ratios from moss (Scleropodium spec.) samples from different anthropogenically polluted areas were studied with respect to ecotoxicologal bioindication.
为了确定具有生物学重要性的氨基酸的天然氮同位素变化,使用气相色谱-燃烧-同位素比值质谱仪(GC-C-IRMS),对17种蛋白质氨基酸的标准混合物和植物(苔藓)样品测试了四种衍生化反应(叔丁基甲基硅烷化、酯化后进行三氟乙酰化、乙酰化和新戊酰化)。研究了例如由多种反应产物形成导致的氮同位素可能的分馏情况。对于生物样品,建议对氨基酸进行酯化后再进行三氟乙酰化,用于氮同位素比值分析。描述了一种用于陆地苔藓非蛋白(NPN)部分氨基酸的同位素比值质谱分析的样品制备技术。研究了来自不同人为污染地区的苔藓(硬叶藓属)样品的14N/15N比值,用于生态毒理学生物指示。