Pfeifer Thomas, Tuerk Jochen, Fuchs Regine
Metabolite Service, Radebeul, Germany.
J Am Soc Mass Spectrom. 2005 Oct;16(10):1687-94. doi: 10.1016/j.jasms.2005.06.008.
Two major metabolites and one minor metabolite of sulfadiazine were found in pig manure, using a special combination of different MS techniques like parent and product ion scans, H/D exchange, accurate mass measurement, and MS/MS experiments with substructures. N4-acetylsulfadiazine and 4-hydroxysulfadiazine were identified as major metabolites. N4-acetylsulfadiazine could be verified by H/D exchange and comparison with product ion spectra of a synthetic reference compound. In the case of 4-hydroxysulfadiazine, the majority of possible isomers could be discounted after H/D exchange. Substructure-specific MS/MS experiments with fragment ions and comparison with product ion spectra of two references revealed the presence of 4-hydroxysulfadiazine. The minor metabolite was characterized to some degree using H/D exchange and tandem mass spectrometry in combination with a high-resolution time of flight mass spectrometer. The aminopyrimidine moiety contained an additional modification with a likely elemental composition of C2H4O and no further acidic hydrogen.
利用不同质谱技术(如母离子和子离子扫描、氢/氘交换、精确质量测量以及具有亚结构的串联质谱实验)的特殊组合,在猪粪中发现了磺胺嘧啶的两种主要代谢物和一种次要代谢物。N4 - 乙酰磺胺嘧啶和4 - 羟基磺胺嘧啶被鉴定为主要代谢物。N4 - 乙酰磺胺嘧啶可通过氢/氘交换并与合成参考化合物的子离子光谱进行比较来验证。对于4 - 羟基磺胺嘧啶,在氢/氘交换后,大多数可能的异构体可以被排除。利用碎片离子进行的亚结构特异性串联质谱实验以及与两种参考物的子离子光谱比较,揭示了4 - 羟基磺胺嘧啶的存在。使用氢/氘交换和串联质谱结合高分辨率飞行时间质谱仪,对次要代谢物进行了一定程度的表征。氨基嘧啶部分含有一种额外的修饰,其可能的元素组成为C2H4O,且没有进一步的酸性氢。