𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Profiling 19-norsteroids. II—tandem mass spectrometric characterization of the heptafluorobutyryl ester and pentafluorobenzyloxime heptafluorobutyryl ester derivatives of 19-norandrosterone using collisionly activated dissociation

✍ Scribed by D. de Boer; S. N. Bensink; A. R. Borggreve; R. D. van Ooijen; R. A. A. Maes


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
359 KB
Volume
30
Category
Article
ISSN
1076-5174

No coin nor oath required. For personal study only.

✦ Synopsis


Abstract

Tandem mass spectrometric methods for the identification of 19‐norandrosterone (3α‐hydroxy‐5α‐estran‐17‐one) are described and evaluated. The fragmentation reactions of the heptafluorobutyryl (HFB) and pentafluorobenzyloxime heptafluorobutyryl (PFBOHFB) ester derivatives of 19‐norandrosterone (3α‐hydroxy‐5α‐estran‐17‐one) in particular were studied for the purpose to select characteristic ions. The HFB ester was analyzed by collisionly activated dissociation (CAD) following electron impact in order to fragment the steroid nucleus. The formation of D‐ring fragments, i.e. the ring containing the keto function, was typical for this type of derivative. Cleavages of fragments with an intact D‐ring were also prominent. The PFBOHFB ester was formed to create a derivative, which could capture electrons and be analyzed in the Electron Capture Negative Chemical Ionization (ECNCI) mode. Besides fragmentations originating in the groups coupled to the steroid by derivatization, also characteristic D‐ring fragments were observed by CAD following ECNCI. Accordingly, of both methods evaluated only CAD following EI of the HFB derivative of 19‐norandrosterone provided a characteristic MS/MS procedure for the identification of 19‐norandrosterone under the conditions studied.