Zhang Ting-Lan, Shi Mei-Yun, Di Xin, Gu Jing-Kai
Yao Xue Xue Bao. 2014 Apr;49(4):507-12.
The fragmentation pathways of five estrogens (estradiol, estrone, equilin sulfate, 17 a-dihydroequilin sulfate and equilenin sulfate) have been studied with high resolution and high mass accuracy using electrospray ionization quadrupole time-of-flight mass spectrometry (ESI-Q-TOF/MS) in the negative ion mode. Molecular weights were obtained from M-H ions in the product ion spectra. The results indicate that the five structurally similar estrogens have similar fragmentation pathways. Using their stable isotope forms as internal reference compounds, the accurate mass and composition of the fragment ions were determined. During collision-induced dissociation (CID), cleavage is initiated by loss of oxygen atoms from carbon-17, after which D and C rings cleave sequentially and rearrange to finally form stable conjugate structures with highly abundant characteristic fragment ions at m/z 183 (accompanied by m/z 181), m/z 169 and m/z 145 (accompanied by m/z 143). Understanding these characteristic fragmentation pathways of estrogens will be helpful in identifying the structures of steroid hormones in general.
使用电喷雾电离四极杆飞行时间质谱(ESI-Q-TOF/MS)在负离子模式下,以高分辨率和高质量准确度研究了五种雌激素(雌二醇、雌酮、硫酸马萘雌酮、17α-二氢马萘雌酮硫酸盐和硫酸马萘雌酚)的碎裂途径。分子量从产物离子谱中的M-H离子获得。结果表明,这五种结构相似的雌激素具有相似的碎裂途径。使用它们的稳定同位素形式作为内标化合物,确定了碎片离子的精确质量和组成。在碰撞诱导解离(CID)过程中,裂解由碳-17上的氧原子丢失引发,之后D环和C环依次裂解并重排,最终形成稳定的共轭结构,在m/z为183(伴有m/z 181)、m/z 169和m/z 145(伴有m/z 143)处具有高度丰富的特征碎片离子。了解这些雌激素的特征碎裂途径将有助于一般地鉴定甾体激素的结构。