Literature DB >> 12820208

Cone voltage induced in-source dissociation of glucuronides in electrospray and implications in biological analyses.

Zhengyin Yan1, Gary W Caldwell, William J Jones, John A Masucci.   

Abstract

Glucuronidation is a common mechanism in drug metabolism. In-source dissociation of glucuronides in electrospray generates fragment ions identical to those of the precursor ions of the original drugs. The effect of experimental parameters on the process was investigated in the present study using both commercially available compounds and glucuronides generated from microsomal glucuronidation incubations. It was found that cone voltage was the most critical parameter contributing to in-source fragmentation of both O- and N-glucuronides, whereas both the desolvation temperature and the source temperature had little effect. Additionally, the extent of in-source dissociation varied for different glucuronides and could be minimized by lowering cone voltage. As demonstrated in real examples, minimizing in-source dissociation can lead to higher sensitivity in detecting glucuronides in biological samples. In addition, product ions resulting from in-source dissociation of glucuronides potentially interfere with accurate determinations of corresponding drug levels if chromatographic separation is not adequate. For cases in which chromatographic separation of glucuronides from the original drugs is not readily achieved or high-throughput analyses are desired, interference caused by in-source dissociation can usually be eliminated simply by using lower cone voltage. This approach has been proven to be effective in the analysis of more than 100 glucuronides generated from in vitro microsomal incubations. Copyright 2003 John Wiley & Sons, Ltd.

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Year:  2003        PMID: 12820208     DOI: 10.1002/rcm.1071

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  6 in total

1.  Farnesol is glucuronidated in human liver, kidney and intestine in vitro, and is a novel substrate for UGT2B7 and UGT1A1.

Authors:  Adam G Staines; Pavel Sindelar; Michael W H Coughtrie; Brian Burchell
Journal:  Biochem J       Date:  2004-12-15       Impact factor: 3.857

2.  In vitro and in vivo quantification of chloroprocaine release from an implantable device in a piglet postoperative pain model.

Authors:  Simona De Gregori; Manuela De Gregori; Nora Bloise; Dario Bugada; Mariadelfina Molinaro; Claudia Filisetti; Massimo Allegri; Michael E Schatman; Lorenzo Cobianchi
Journal:  J Pain Res       Date:  2018-11-08       Impact factor: 3.133

3.  In silico deconjugation of glucuronide conjugates enhances tandem mass spectra library annotation of human samples.

Authors:  Carolin Huber; Martin Krauss; Vera Reinstadler; Sara Denicolò; Gert Mayer; Tobias Schulze; Werner Brack; Herbert Oberacher
Journal:  Anal Bioanal Chem       Date:  2022-01-26       Impact factor: 4.142

4.  Induced in-source fragmentation pattern of certain novel (1Z,2E)-N-(aryl)propanehydrazonoyl chlorides by electrospray mass spectrometry (ESI-MS/MS).

Authors:  Ali S Abdelhameed; Mohamed W Attwa; Hatem A Abdel-Aziz; Adnan A Kadi
Journal:  Chem Cent J       Date:  2013-01-25       Impact factor: 4.215

5.  Multistage fragmentation of ion trap mass spectrometry system and pseudo-MS3 of triple quadrupole mass spectrometry characterize certain (E)-3-(dimethylamino)-1-arylprop-2-en-1-ones: a comparative study.

Authors:  Ali S Abdelhameed; Adnan A Kadi; Hatem A Abdel-Aziz; Rihab F Angawi; Mohamed W Attwa; Khalid A Al-Rashood
Journal:  ScientificWorldJournal       Date:  2014-02-19

6.  High sensitivity combined with extended structural coverage of labile compounds via nanoelectrospray ionization at subambient pressures.

Authors:  Jonathan T Cox; Scott R Kronewitter; Anil K Shukla; Ronald J Moore; Richard D Smith; Keqi Tang
Journal:  Anal Chem       Date:  2014-09-26       Impact factor: 6.986

  6 in total

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