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串联四极杆质谱仪中分子负离子碰撞活化形成主要雌二醇产物离子的机制。

Mechanism of formation of the major estradiol product ions following collisional activation of the molecular anion in a tandem quadrupole mass spectrometer.

机构信息

Department of Obstetrics and Gynecology, University of Colorado School of Medicine, Anschutz Medical Campus, Aurora, CO, 80045, USA.

出版信息

J Am Soc Mass Spectrom. 2013 Oct;24(10):1451-5. doi: 10.1007/s13361-013-0705-y. Epub 2013 Aug 18.

Abstract

The importance of the mass spectral product ion structure is highlighted in quantitative assays, which typically use multiple reaction monitoring (MRM), and in the discovery of novel metabolites. Estradiol is an important sex steroid whose quantitation and metabolite identification using tandem mass spectrometry has been widely employed in numerous clinical studies. Negative electrospray ionization tandem mass spectrometry of estradiol (E2) results in several product ions, including the abundant m/z 183 and 169. Although m/z 183 is one of the most abundant product ions used in many quantitative assays, the structure of m/z 183 has not been rigorously examined. We suggest a structure for m/z 183 and a mechanism of formation consistent with collision induced dissociation (CID) of E2 and several stable isotopes ([D4]-E2, [(13)C6]-E2, and [D1]-E2). An additional product ion from E2, namely m/z 169, has also been examined. MS(3) experiments indicated that both m/z 183 and m/z 169 originate from only E2 M - H m/z 271. These ions, m/z 183 and m/z 169, were also present in the collision induced decomposition mass spectra of other prominent estrogens, estrone (E1) and estriol (E3), indicating that these two product ions could be used to elucidate the estrogenic origin of novel metabolites. We propose two fragmentation schemes to explain the CID data and suggest a structure of m/z 183 and m/z 169 consistent with several isotopic variants and high resolution mass spectrometric measurements.

摘要

质谱产物离子结构的重要性在定量分析中得到了强调,定量分析通常使用多重反应监测 (MRM),并且在新代谢物的发现中也得到了强调。雌二醇是一种重要的性激素,其使用串联质谱进行定量和代谢物鉴定已在许多临床研究中得到广泛应用。雌二醇 (E2) 的负离子电喷雾串联质谱会产生多个产物离子,包括丰富的 m/z 183 和 169。尽管 m/z 183 是许多定量分析中使用的最丰富的产物离子之一,但 m/z 183 的结构尚未经过严格检查。我们提出了 m/z 183 的结构和形成机制,该机制与 E2 和几种稳定同位素 ([D4]-E2、[(13)C6]-E2 和 [D1]-E2) 的碰撞诱导解离 (CID) 一致。E2 还产生了另一个产物离子,即 m/z 169。MS(3) 实验表明,m/z 183 和 m/z 169 均仅来自 E2 M - H m/z 271。这些离子,m/z 183 和 m/z 169,也存在于其他突出的雌激素雌酮 (E1) 和雌三醇 (E3) 的碰撞诱导分解质谱中,这表明这两个产物离子可用于阐明新代谢物的雌激素来源。我们提出了两种碎片方案来解释 CID 数据,并提出了与几种同位素变体和高分辨率质谱测量结果一致的 m/z 183 和 m/z 169 的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e21/3786604/a7f0e157354e/nihms-516830-f0001.jpg

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