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阐明质子化和去质子化雌酮离子的分解途径:在光解产物鉴定中的应用。

Elucidation of the decomposition pathways of protonated and deprotonated estrone ions: application to the identification of photolysis products.

机构信息

Ecole Polytechnique et CNRS, Département de Chimie, Laboratoire des Mécanismes Réactionnels (DCMR), UMR 7651, 91128 Palaiseau Cedex, France.

出版信息

Rapid Commun Mass Spectrom. 2010 Oct 30;24(20):2999-3010. doi: 10.1002/rcm.4722.

Abstract

With the future aim of elucidating the unknown structures of estrogen degradation products, we characterized the dissociation pathways of protonated estrone (E1) under collisional activation in liquid chromatography/tandem mass spectrometry (LC/MS/MS) experiments employing a quadrupole time-of-flight mass spectrometer. Positive ion and negative ion modes give information on the protonated and deprotonated molecules and their product ions. The mass spectra of estrone methyl ether (CH(3)-E1) and estrone-d(4) (E1-d(4)) were compared with that of E1 in order (i) to elucidate the dissociation mechanisms of protonated and deprotonated molecules and (ii) to propose likely structures for each product ions. The positive ion acquisition mode yielded more fragmentation. The mass spectra of E1 were compared with those of estradiol (E2), estriol (E3) and 17-ethynylestradiol (EE2). This comparison allowed the identification of marker ions for each ring of the estrogenic structure. Accurate mass measurements have been carried out for all the identified ions. The resulting ions revealed to be useful for the characterization of structural modifications induced by photolysis on each ring of the estrone molecule. These results are very promising for the determination of new metabolites in the environment.

摘要

未来的目标是阐明雌激素降解产物的未知结构,我们在液相色谱/串联质谱(LC/MS/MS)实验中采用四极杆飞行时间质谱仪,对质子化雌酮(E1)在碰撞激活下的离解途径进行了表征。正离子模式和负离子模式提供了关于质子化和去质子化分子及其产物离子的信息。雌酮甲醚(CH(3)-E1)和雌酮-d(4)(E1-d(4))的质谱与 E1 的质谱进行了比较,以便(i)阐明质子化和去质子化分子的离解机制,(ii)提出每个产物离子的可能结构。正离子采集模式产生了更多的碎片。将 E1 的质谱与雌二醇(E2)、雌三醇(E3)和 17-乙炔基雌二醇(EE2)的质谱进行了比较。这种比较可以识别雌激素结构每个环的标记离子。对所有鉴定出的离子进行了精确质量测量。结果表明,这些离子对于表征雌酮分子每个环的光解诱导的结构修饰非常有用。这些结果对于确定环境中的新代谢物非常有前景。

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